Future note (documentation archive) + dark matter detection method (optical lattice clock)
The dark matter fluid universe model and cosmic gate theory integrate BHc/WHc gates to address limitations in current technologies, achieving comprehensive control of gravity, time, and matter, enabling ultra-high-speed navigation and communication.
Patent Information
- Application Number
- JP2025209960
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-11-30
- Publication Date
- 2026-02-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Current space, communication, and navigation technologies are limited by the inability to integrate control of gravity and time changes on a cosmic scale, lack of direct dark matter utilization, and insufficient understanding of the layered structure of the cosmos, leading to challenges in ultra-high-speed navigation, multi-layered inter-universe communication, and local time control.
A technological system based on the dark matter fluid universe model and cosmic gate theory, utilizing BHc/WHc gates to manipulate dark matter flow for integrated control of gravity, time, and matter, enabling ultra-long distance communication and navigation through dark matter density fluctuations.
Enables comprehensive control of gravity, time, and matter on a cosmic scale, facilitating ultra-high-speed navigation, ultra-long distance communication, and integrated space-scale navigation, defense, and time manipulation.
Abstract
Description
[Technical Field]
[0001] This is a future notebook that envisions a space age in the distant future, which envisions a technological level surpassing that of the Kardashev III civilization and systematically envisions future space technology in an era aiming to reach the Kardashev IV civilization. This invention is a systematization of theories and concepts regarding far-future space technology that cannot be realized with current technology. The description of this invention is based on the premise of a technological level thousands to tens of thousands of years from now, such as dark matter control, space gate operation, and integrated control of time, gravity, and material behavior, and can be positioned as a message from ancient humanity to future scientists and engineers to consider space-scale applications. This invention relates to ultra-future space technology that enables integrated control of time, gravity, material behavior, and dark matter flow, as well as space navigation, defense, and ultra-long distance communication and coordinate transmission, based on the dark matter fluid universe model and cosmic gate theory. The scope of application of this invention extends from the local planetary scale (Kardashev I civilization) to the stellar system scale (Kardashev II civilization), the galactic scale (Kardashev III civilization), and even outer space equivalent to the multiverse scale (the celestial and oceanic universe), and theoretically, technological applications at the level of Type IV civilization are possible. This invention relates to a far-future space technology system that systematically integrates dark matter-mediated space control technology, centered on the hierarchical structure of the cosmos and outer space (the celestial universe), based on the dark matter fluid universe model (A1) and the cosmic gate theory (A2). Specifically, the following technical fields are included: Multi-layer space structure control technology Modeling the hierarchical structure of the cosmos and outer space (the heavens and the seas) - Integrated analysis of dark matter flow, cosmic gate opening and closing, rotation, and hydrodynamic motion ·Isolate and stabilize the time, gravity, and material behavior inside the space sphere from the outer space (the heavens and the sea) Dark matter control technology ·Local dark matter shielding and accumulation by BHc (black hole type closed gate) · Local dark matter supply interruption by WHc (white hole type closing gate) -Dark matter density manipulation allows for control of the direction, strength, time change, and inertia of the gravitational field Time Control Technology -Local time dilation / stop due to high density dark matter regions Time acceleration due to low-density dark matter regions - Formation of a time-delay interface by connecting accelerated space and normal space Gravity Control Technology · Gravity shielding of individual objects using BHc materials - Artificial gravity generation and direction control by inducing dark matter flow - Freely manipulate the local gravitational field inside and outside the space sphere Space navigation and defense technology - High-density dark matter barrier layer slows down moving bodies and forms a protective shield · Ultra-high speed transport through BHc / WHc tunnel · Inertia reduction Deploy a temporal defense field around planets and space stations Extra-space communication and coordinate transmission technology Ultra-long distance communication using dark matter density fluctuations (Δrho_DM) (dark matter pulse communication) -Sending coordinate signals to outer space (the heavens and the sea) by synchronously opening and closing a group of giant gates Real-time communication and control interface between space sphere and celestial orbit Connectivity technology to Tenkai Senu ·Synchronous control of BH gate groups on a scale of tens of thousands to hundreds of billions · Formation of a gate interface that directly connects the outer wall of the space sphere with outer space (the heavens and the sea) · Construction of stable distribution channels for dark matter, matter, and information By integrating all of these technologies, the present invention provides a far-future space technology system that can comprehensively control time, gravity, material behavior, communication, and space navigation. The following definitions apply to terms used in this specification: 1. Universe Bubble A local universe unit. A closed space containing matter, energy, and dark matter. Dark matter is trapped inside by a BHc membrane, shielding it from the outside world. Time, gravity, and matter behavior can be controlled within the universe sphere. 2. Meta-Fluid Universe A higher-level cosmic structure that surrounds the cosmic sphere. It is a huge space where dark matter and energy flow, and mediates the exchange of information, matter, and energy between the cosmic sphere and the outside world. As a higher level of the multi-layered cosmic structure, it is involved in the formation, stabilization, and communication of the cosmic sphere. 3. Black Hole Gate (BH Gate) A tiny black hole that exists within matter. It acts as an exit gate that expels dark matter from the interior of the cosmic sphere to the outer celestial sphere. It can be closed using BHc material. 4. White Hole Space Gate (WH Gate) A gate on the vacuum side. It functions as an entrance gate that supplies dark matter from the celestial sphere to the cosmic sphere. It can be closed by a WHc field. 5. BHc Material (Black Hole Gate Closure Material) A substance that has closed off a black hole-type space gate. It blocks the flow of dark matter to the outside, and is neither generated nor affected by gravity. 6. WHc field (White Hole type gate closed vacuum field) A vacuum region created by closing a white hole-type space gate. It can cut off the supply of dark matter to the interior and create a localized low-density dark matter space. 7. DM Style (Dark Matter Style) The flow of dark matter between the cosmic sphere and outer space (the celestial sphere), acting as a medium for gravity and time change. 8. Nested Universe Bubble Model The hierarchical structure of the cosmic sphere and outer space (the heavens and the seas). A basic model for integrated control of dark matter, time, and gravitational behavior at each layer. 9. Local time acceleration / deceleration space A space where the speed of time progression can be controlled to be different from that of external space by locally increasing or decreasing the dark matter density through BHc / WHc gate operation. 10. DM Isolation Tunnel A passageway that minimizes local dark matter density through a hybrid structure of the BHc outer wall and the WHc internal space. Ultra-high speed transportation is possible through time acceleration, reduced inertia, and zero resistance. 11. Notes on Future Space Technology This refers to the document itself. A notebook that systematically summarizes the theories and concepts of future space technology for the Kardashev III-IV civilization. [Background technology]
[0002] Current space, communications, and navigation technologies have significant limitations, including: Difficulties in local control of gravity and time changes -With modern physics technology, there is no way to locally shield a gravitational field or change the speed of time around an object. · Gravity manipulation by physical means (propulsion, magnetic field control, centrifugal force, etc.) is limited to local effects, and integrated control of gravitational fields and time changes on a cosmic scale is impossible. Limitations of communication and connectivity due to speed of light constraints Due to the speed of light, communication between galaxies, between cosmic spheres, or with outer space (the heavens and the seas) is virtually impossible. -Current wormhole theory and quantum communication technology remain in the theoretical stage and have not yet been put to practical use. - The problems of time delay and transmission interruption in ultra-long distance transmission of matter, information, and energy remain unsolved. Lack of direct utilization and control of dark matter The existence of dark matter has been inferred from observations of gravitational fields, but its structure, physical properties, and means of operation remain unknown. Direct control of dark matter flow, local density manipulation, and applications to communication and matter transportation are not possible with current technology. Lack of foundation for analyzing the layer structure of the cosmos and outer space (the heavens and the sea) Although a layered universe model including the cosmic sphere and outer space (the celestial orbit) has been theoretically proposed, there is no integrated model that analyzes the dynamics of local and large-scale structures, gate opening and closing, or DM flow. There is a lack of theoretical basis for controlling the flow of matter, energy, and information on a cosmic scale, making practical application impossible. Restrictions on application of prior art Gravity control, time control, and navigation technologies are being studied independently, and there is no application of them as an integrated space-scale control system. -Technical challenges such as multi-layered inter-universe communication, ultra-high-speed navigation, local time control, and connection to outer space (the heavens and the sea) are difficult to achieve with current technology. Considering the above constraints, the realization of the present invention requires a technology that satisfies the following requirements. Integrated control of local and large-scale gravitational and temporal behaviors via dark matter fluids Control of dark matter absorption and supply by BHc / WHc gates · Ultra-long distance transmission means of matter, information, and energy between the cosmos and outer space (the heavens and the earth) - Multi-layer structure analysis inside and outside the space sphere, and stabilization and reconstruction technology The present invention aims to overcome the above limitations and provide a far-future space technology system that can comprehensively control gravity, time, matter, and information on a cosmic scale. Detailed Description of the Invention
[0003] The purpose of this invention is to overcome the limitations of conventional technology and to provide a technological system that can comprehensively control the behavior of gravity, time, and matter on a cosmic scale based on the dark matter fluid universe model (A1) and cosmic gate theory (A2). Specifically, the objectives are as follows: 1. Integrated control of gravity, time, and matter behavior based on a dark matter fluid universe model By treating the dark matter that fills outer space as a fluid and controlling its flux and changes in local density, we can freely manipulate interactions between materials and gravitational fields. By manipulating the local dark matter concentration, it is possible to control the speed at which time passes and the speed of physical reactions. - The behavior of the laws of physics is artificially adjusted by realizing time delay and local gravity enhancement in high-density DM regions, and time acceleration and gravity suppression in low-density DM regions. 2. Controlling local and large-scale dark matter with BHc / WHc gates -Using tiny black holes (BH gates) inside matter and white holes (WH gates) in vacuum, we will control the suction and supply of dark matter locally and on a large scale. -BHc material blocks dark matter absorption, providing gravity shielding and zero gravity for individual objects. By blocking the supply of dark matter using the WHc field, it becomes possible to accelerate time and reduce inertia, creating ultra-high speed travel spaces and tunnels. 3. Communication and coordinate information transfer between the space sphere and outer space (the heavens and the sea) By synchronizing BH gates and WH gates on a large scale, dark matter communication between the cosmos and outer space (the celestial sphere) becomes possible. By using dark matter density fluctuations (Δrho_DM) as a signal, ultra-long distance communication and coordinate information transmission beyond the speed of light can be realized. The synchronized opening and closing of the giant gates stabilizes the transmission of coordinate signals to outer space (the Heavenly Sea Sphere) and the two-way exchange of information between the inside and outside of the space sphere. 4. Space Navigation, Defense, and Time Acceleration / Deceleration Space Construction - It can be used as a defense and safety device, such as slowing down by high-density DM fields, barrier space, and time defense clouds around planets. The BHc / WHc hybrid structure enables localized time acceleration and inertia reduction, creating ultra-high-speed navigation tunnels and particle / object transport routes. By combining time manipulation and gravity control, it is possible to generate localized time-stop or accelerated spaces. 5. Controlling the dynamics of the universe using multi-layered space structures Theoretical analysis of the hierarchical structure of the cosmos and outer space (the celestial universe) and integrated control of the flow of dark matter, time, and gravitational behavior on a cosmic scale. Integrated control of matter, information, and DM flows inside and outside the space sphere will enable space-scale navigation, communication, defense, and environmental control. This system will serve as the foundation for ultra-future space technology that utilizes the multi-layered structure of space, providing all-round applications for navigation, information transmission, defense, and time manipulation. Key points of the invention: Integrated control of gravity, time, and matter using a dark matter fluid model ·Local and large-scale DM manipulation using BHc / WHc gates Realization of ultra-long distance communication and coordinate information transmission Space navigation, defense, time acceleration / deceleration space construction - Integrated control of the entire universe using multi-layer space structures The invention comprises: A. Fundamental theory (basic invention) A1. Dark matter fluid universe model (1) Reinterpretation of gravity The local gravitational acceleration g(r) is given by the divergence of the dark matter flux J_DM(r): g(r) ~= - div * J_DM(r) ·g(r): local gravitational acceleration vector ·J_DM(r): dark matter flux vector div*J_DM(r): Dark matter flux divergence (degree of inflow / outflow) (2) Local model of time change The local time tau depends on the dark matter density rho_DM(r): d(tau) / dt = f(rho_DM(r)) tau: local time ·t: Space reference time f(rho_DM): a function that depends on the local dark matter density (the higher the density, the smaller d(tau) / dt) (3) Mediating the movement of matter Matter interactions can be described as changes in the local dark matter flux: F_DM = m * g(r) ~= - m * div * J_DM(r) F_DM: Force mediated by dark matter ·m:Material mass ·g(r): the local gravitational acceleration mentioned above (4) Application Examples Increasing local DM density reduces physical reaction speed → time delay - Lowering local DM density increases physical reaction speed → Time acceleration By inducing dark matter flow, the direction and strength of gravity can be manipulated. Controlling the dynamics of the multi-layered universe through DM flow analysis between the cosmos and outer space (the heavens and the sea) A2. Cosmic Gate Theory (1) Basic concept - Within matter, tiny black holes (BH gates) exist, which function as exit gates that suck dark matter into outer space (the celestial universe). The zero-point oscillation in the vacuum acts as a white-hole type DM entrance gate, supplying dark matter from outer space (the heavens) to the cosmos. The flow of matter, information, and DM between the cosmic sphere and outer space (the heavens and the sea) is controlled by these gate structures. (2) Gate model Black hole type exit gate (BH gate) J_DM_out = k_BH * A_BH * rho_local J_DM_out: Dark matter flow rate from the BH gate to outer space (the universe) k_BH: BH gate transmission coefficient A_BH: Gate cross-sectional area rho_local: Local dark matter density around the gate Whitehall entrance gate (WH gate) J_DM_in = k_WH * A_WH * rho_meta ·J_DM_in: Dark matter flux from outer space (the heavens) into the cosmic sphere k_WH: WH gate transmission coefficient A_WH: Gate cross-sectional area ·rho_meta: Dark matter density in outer space (the universe) (3) Time variation of local DM density Due to the suction and supply action of the gate, the local dark matter density changes as follows: d(rho_local) / dt = J_DM_in - J_DM_out + div(D_DM * grad(rho_local)) rho_local: Local dark matter density in the cosmic sphere ·D_DM: Dark matter diffusion coefficient ·div(D_DM * grad(rho_local)) : Diffusion and flow term of DM (4) Mediating gate operation and physical phenomena BH gate: A tiny black hole inside the material sucks the local DM into outer space (the celestial universe) → local gravity is generated WH gate: Vacuum zero-point vibration supplies DM from outer space (the heavens) → local time control (acceleration / deceleration) -Synchronous and asynchronous operation of multiple gates enables control of time, gravity, and DM flow in local space (5) Application Examples -Freely adjust the local dark matter concentration by controlling the opening and closing of the BHc / WHc gates - Formation of tunnels to control the flow of matter and information inside the space sphere -Based on ultra-long distance communication with outer space (the heavens and the sea) and coordinate information transmission Space manipulation such as gravity shielding, time acceleration / deceleration, and inertia reduction B. Gate control technology (core invention) B1. Black Hole Type Cosmic Gate Closure Material (BHc Material) (1) Basic concept BHc material is a material that can artificially close or shield tiny black hole-type space gates (BH gates) within matter. BHc material blocks local dark matter attraction, prevents gravity from being generated on an object-by-object basis, and is unaffected by external gravitational fields. This allows for the manipulation, accumulation, shielding and control of dark matter density. (2) DM flow interruption model Gate closure by BHc material controls the local dark matter flux JDM as follows: JDM effective = JDM * (1 - SBHc) ·J_DM_effective: Effective dark matter flux after passing through the BHc material ·J_DM: Normal dark matter flux when the BH gate is open S_BHc: Shielding coefficient of BHc material (0 <= S_BHc <= 1) ··S_BHc = 1: Complete shielding (zero flux) ··S_BHc = 0: No shielding (same as normal material) (3) Gravity shielding characteristics The local dark matter flux within BHc material is blocked, so the material does not generate a gravitational field and is not affected by the surrounding gravitational field. Gravitational effect can be expressed as: g_effective = g_env * (1 - S_BHc) ·g_effective: Effective gravity inside and on the surface of the BHc material g_env: Gravitational acceleration of the external environment · If S_BHc = 1, g_effective = 0 (complete weightlessness) (4) Application Examples Gravity-nullifying objects -Objects made of BHc material are not affected by gravitational fields and can float and move freely. Local DM accumulation and shielding -By blocking the suction caused by BHc, it is possible to create differences in dark matter density. Used to control time delay, acceleration, and inertial changes in local space. Space defense and navigation technology applications The outer BHc wall can form a barrier that blocks the DM flow and slows it down. - Used as the outer shell material of high-speed navigation tunnels, it can achieve local time control and gravity shielding. (5) Summary of material properties BHc material is an artificial substance with gate opening and closing control function DM flow blocking capacity: fully to partially adjustable Gravity Shielding Ability: Nullifies local and external gravity fields Time control: Contributes to reaction rate and time delay control by changing the local DM density -Can be used as a base material for space navigation, communications, and defense technologies B2. White Hole Type Space Gate Closed Vacuum Field (WHc Field) (1) Basic concept A WHc field is a local vacuum field formed by artificially closing a white hole-type gate (WH gate) in outer space and cutting off the supply of dark matter from outer space (the heavens and the seas). The WHc field makes it possible to extremely reduce the dark matter density locally, artificially creating an ultra-low density DM space. This local low-density DM space causes time acceleration and inertia reduction, making it possible to apply it to ultra-high-speed travel tunnels and time-accelerated spaces. (2) DM flow interruption model The dark matter influx in the WHc field is given by the following formula: J_DM_effective = J_DM * (1 - S_WHc) ·J_DM_effective: Effective dark matter flux in the WHc field J_DM: Normal dark matter inflow when WH gate is opened S_WHc: WHc field blocking coefficient (0 <= S_WHc <= 1) ··S_WHc = 1: Completely blocked (zero flux) ··S_WHc = 0: No interruption (normal vacuum) (3) Local DM density change model The local dark matter density change due to the interruption of the supply by the WHc field is given by: d(rho_local) / dt = - J_DM_effective + div(D_DM * grad(rho_local)) rho_local: local dark matter density ·D_DM: Dark matter diffusion coefficient ·div(D_DM * grad(rho_local)): Local DM diffusion and flow term ·When WHc is closed, J_DM_effective decreases → rho_local decreases, and a low-density DM space is formed. (4) Time acceleration characteristics As the local DM density decreases, the physical reaction rate accelerates, and the local time tau progresses faster than the cosmic reference time t: d(tau) / dt = f(rho_local) , f'(rho_local) > 0 ·The smaller rho_local is, the larger d(tau) / dt becomes, and local time accelerates. This causes the inside of the WHc field to become a time-accelerated space. (5) Application Examples Ultra-high speed tunnel formation ·DM flow blocking at the outer wall of BHc + DM supply blocking inside WHc ·Minimum local DM density → Time acceleration × Inertia reduction × Zero resistance Theoretical basis for high-speed transportation and faster-than-light travel Local Time Control - WHc field cuts off DM supply to form a time acceleration space · Can be applied to physics experiments, particle transport, and speeding up information transmission Local DM flow control · Shutdown of WHc blocks DM flow from outer space (Celestial Sphere) -By combining with BHc material, it is possible to create a completely independent local space. (6) Summary of physical properties The WHc field is a technology for artificially creating a localized low-density dark matter space. DM flow blocking capacity: fully to partially adjustable Time acceleration ability: Can be controlled according to local DM shortage High-speed transportation, reduced inertia, and faster-than-light travel. Usable as a base material for space. -By combining with BHc material, it is possible to create a closed tunnel or time acceleration space. B3. BHc / WHc hybrid structure (1) Basic concept The BHc / WHc hybrid structure is a tunnel structure constructed by combining BHc material on the outer wall and a WHc field in the interior space, minimizing the local dark matter density. The BHc outer wall blocks the external dark matter flow, providing gravity shielding and zero gravity. The inside of WHc blocks the supply of dark matter from outer space (the heavens), forming a locally ultra-low density DM space. This combination results in a high-speed movement space with time acceleration, reduced inertia, and zero resistance. (2) DM flow model Local DM density change due to the combination of shielding by the outer wall BHc and supply interruption by the inner wall WHc: d(rho_local) / dt = J_DM_in * (1 - S_WHc) - J_DM_out * (1 - S_BHc) + div(D_DM * grad(rho_local)) rho_local: Local dark matter density inside the tunnel ·J_DM_in: DM supply flow from outer space (Celestial Sea) · J_DM_out: DM outflow to the outside world ·S_WHc: WHc field blocking coefficient (0~1) ·S_BHc: BHc outer wall shielding coefficient (0~1) ·D_DM: Dark matter diffusion coefficient For full closure, S_WHc = 1, S_BHc = 1 → rho_local minimization (3) Time acceleration and inertia reduction characteristics A local DM density reduction causes time acceleration and inertia reduction: d(tau) / dt = f(rho_local) The more rho_local is minimized, the faster the local time tau progresses compared to the cosmic reference time t. · Inertia depends on the local DM density, so lowering density reduces movement resistance. (4)Structural design Exterior wall (BHc) External DM shielding degree can be adjusted by changing thickness and material · Gravity shielding · Object protection role Internal space (WHc) -Local DM density can be fine-tuned by gate closure degree ·Time acceleration ·Core area of ultra-high speed transportation Overall structure - Passing speed and acceleration rate can be adjusted by controlling the tunnel length, cross-sectional area, and gate opening and closing. -Multilayer BHc / WHc structure allows for the formation of continuous ultra-high speed transport paths (5) Application Examples High-speed transport tunnel ·Minimum local DM density → Time acceleration × Inertia reduction × Zero resistance -Can be used as a high-speed transportation route for spacecraft and material transport Time Control Space -Time progresses faster inside the tunnel than in the outside world - Improved efficiency of space experiments and long-distance travel Localized zero gravity space · Gravity shielding by BHc outer wall → Objects can be levitated and controlled freely Defense and Barrier Applications -Multiple layers of BHc outer walls → Protection from space object collisions and dark matter flows (6) Summary of physical properties BHc / WHc hybrid structure artificially constructs a space with minimal dark matter density - Integrated space of time acceleration, inertia reduction, and gravity shielding - Multipurpose applications such as high-speed travel, time control, zero gravity, and defense are possible - Local DM control and gate opening / closing control provide a platform for ultra-future space-scale navigation technology C. Time Control Technology C1. Time delay device using high DM density field (1) Basic concept A high DM density field is a device that artificially creates a space that locally holds a high concentration of dark matter (DM). -Increase the local DM density by shielding and controlling the inflow and outflow of dark matter using BHc materials and gate control techniques. -Increasing local DM density can slow down physical reaction speeds and clock progression, making it possible to create a space where time is delayed or stopped. (2) Local DM density model d(rho_local) / dt = J_DM_in - J_DM_out * (1 - S_BHc) + div(D_DM * grad(rho_local)) rho_local: local dark matter density J_DM_in: Dark matter supply flow from the outside (reduced if shielded by BHc) · J_DM_out: Local DM outflow ·S_BHc: BHc shielding coefficient (0~1, 1 means complete shielding) ·D_DM: Dark matter diffusion coefficient Shielding by BHc material reduces J_DM_out → increases rho_local → forms high DM density field (3) Time delay characteristics Increasing the local DM density slows down the rate of physical reactions and the clock: d(tau) / dt = f(rho_local) The higher rho_local, the smaller d(tau) / dt becomes, and the local time tau lags behind the external cosmic time t. By adjusting S_BHc, the time delay rate can be controlled arbitrarily. example: ·S_BHc = 1 (complete occlusion) → rho_local maximum → tau is close to stopping S_BHc < 1 (partial occlusion) → rho_local medium → tau is delayed (4) Application Examples Time-stopping and delay space generation Controls the time progression of objects and experimental equipment inside high DM density fields ·Can be used for space experiments, protecting life forms, and long-term storage space Local inertial changes High DM density also increases inertia and causes a deceleration effect ·Applications to movement speed control and collision prevention Space navigation / defense DM concentration by a shielding wall made of BHc material → Formation of a time delay space around the spacecraft Increases the relative speed difference with foreign objects, allowing for collision avoidance and deceleration (5) Summary of physical properties · Local DM concentration by BHc shielding → Control time delay and stop -Time delay rate can be adjusted arbitrarily by shielding degree S_BHc By combining it with inertial change and gravity shielding, it is possible to achieve high-level control in space defense, navigation, and physics experiments. - High DM density field can be linked with C2 (time accelerator) and B3 (DM isolation tunnel) to create a time-controlled space. C2. Time Acceleration Device Using Low DM Density Field (1) Basic concept A low DM density field is a device that artificially reduces the local dark matter (DM) density in space by blocking the local DM supply using a WHc field. A decrease in local DM density can accelerate physical reaction rates and clock progression, creating a local time acceleration space. By combining it with a BHc / WHc hybrid structure, it is possible to create ultra-high speed travel tunnels and time acceleration spaces. (2) Local DM density model When the DM supply is interrupted by the WHc field, the local DM density changes as follows: d(rho_local) / dt = J_DM_in * (1 - S_WHc) - J_DM_out + div(D_DM * grad(rho_local)) rho_local: local dark matter density ·J_DM_in: DM supply flow from outer space (Celestial Sea) ·J_DM_out: Local DM outflow S_WHc: WHc field blocking coefficient (0 <= S_WHc <= 1, 1 is complete blocking) ·D_DM: Dark matter diffusion coefficient When S_WHc = 1, the local DM supply is completely cut off and rho_local is minimized → Time acceleration space formation (3) Time acceleration characteristics The time acceleration due to the local DM density reduction is given by: d(tau) / dt = f(rho_local) The lower rho_local is, the larger d(tau) / dt is, and the local time tau progresses faster than the cosmic reference time t. ·Time acceleration rate can be controlled arbitrarily by adjusting S_WHc example: ·S_WHc = 1 (complete shutoff) → tau is the maximum acceleration S_WHc < 1 (partial blocking) → tau is moderately accelerated (4) Application Examples Generation of local time acceleration space Accelerate physical reactions and calculation speeds within the WHc field -Can be used for space experiments, information processing, and speeding up particle transport Ultra-high-speed moving tunnel ·DM flow shielding at the outer wall of BHc + supply cutoff inside WHc · Time acceleration × Inertia reduction × Zero resistance → Formation of ultra-high speed transportation route Space and defense applications -Improved movement efficiency through local time acceleration - Faster transport times for fast-moving spaceships and cargo (5) Summary of physical properties · WHc closure cuts off local DM supply → rho_local decreases → time accelerated Acceleration rate can be controlled by S_WHc By linking with the BHc / WHc hybrid structure, time acceleration, inertia reduction, and integrated control of ultra-high speed moving space are possible. By combining with C1 (time delay device), accurate acceleration and deceleration of local time can be realized. C3. Time-delayed interface technology (1) Basic concept Time difference interface technology is a technology that connects and adjusts local time acceleration space (C2) or time delay space (C1) with external normal space (universal reference time). It precisely controls the time difference between accelerated space and normal space, enabling safe and efficient movement, communication, and experiments of objects and information. · Design and maintain time gradients based on BHc / WHc hybrid structures and local DM density control. (2) Local time gradient model The relationship between local time tau and outer space (celestial) reference time t: d(tau) / dt = f(rho_local) rho_local: local dark matter density f(rho_local): time-varying function depending on DM density Acceleration space (low DM density): f(rho_local) > 1 → tau progresses quickly ·Slowdown space (high DM density): f(rho_local) < 1 → tau progress slow The time difference interface controls the time difference Δt between the local space tau and the outer space t: Δt = ∫_0^T [1 - f(rho_local(t))] dt Δt: time difference (accumulated time difference due to acceleration / delay) T: Observation period ·By controlling the change of rho_local(t) in real time, Δt can be set arbitrarily. (3) Connection and control mechanism Space Connection Gate ·BHc outer wall blocks local DM flow · Supply cut off or partial opening inside WHc This allows for flexible connection between acceleration space and normal space. Time difference control -Regulation of local DM density (S_BHc, S_WHc) controls the progression rate of tau Smooth transitions of time gradients at connections ensure safe transitions of objects and signals Local Time Correction When an object or signal moves from accelerated space to normal space, the time difference correction is calculated and synchronized. Maintaining the integrity of physical reactions and communication signals based on Δt (4) Application Examples Space Travel and Transportation -Safely control the transition from accelerated space to normal space - Synchronization of objects entering and exiting the ultra-high speed moving tunnel (B3) Time-delayed communication ·Process information in local time acceleration space → output to normal space Controlling Δt enables ultra-high speed communication without delay Experiments and Observations Accurately convert and record experimental results in acceleration / delay space into standard space time. - Application to high-speed physical phenomenon observation and time manipulation experiments (5) Summary of physical properties By using BHc / WHc gate control, the time difference Δt between the acceleration / delay space and the normal space can be arbitrarily designed. Real-time control based on local DM density changes - Can be used for a variety of purposes, including ultra-high speed transportation, time acceleration / deceleration, communication, and experimental observation By linking with the C1 / C2 device, local time control can be made more precise and safer. D. Gravity Control Technology D1. Gravity shielding (1) Basic concept Gravitational shielding technology is a technology that uses BHc material to block the dark matter (DM) suction flow from around an object, creating an object that is locally immune to the effects of gravity. This technology is based on the premise that dark matter flux is the cause of gravitational phenomena, and shields gravity by controlling the DM flow. (2) DM suction shielding model The gravitational acceleration g_local is reduced by the shielding of the local DM flow: g_local = G * ∫_V (rho_DM(r) * (r_vec - r_obj) / |r_vec - r_obj|^3) dV * (1 - S_BHc) g_local: Local gravitational acceleration around the object ·G: Gravitational constant rho_DM(r): Dark matter density at position r r_obj: object center position vector ·S_BHc: BHc shielding coefficient (0 <= S_BHc <= 1, 1 complete shielding) When the external DM flow is blocked by the BHc material, g_local → 0 (3) Structural design Exterior wall BHc material - Arranged in a shape that surrounds the entire object S_BHc can be adjusted by changing the shielding thickness and material interior space · The inside of the BHc material can be normal material · Local DM flow shielding nullifies the gravitational response of the entire object Multilayer BHc structure - Shielding coefficient can be adjusted for each layer, allowing for complete zero gravity or partial gravity control (4) Application Examples Generation of zero-gravity objects By surrounding spacecraft and experimental equipment with BHc material, they can be made to be gravity-insensitive. Local Gravity Control By adjusting S_BHc, you can set any gravity direction and strength. - Artificial gravity space can be created by freely controlling the direction and strength of gravity (linked with D2) Defense and navigation applications Inertial control of moving bodies in space - Mitigation of reactions to meteorite and cosmic dust impacts (5) Summary of physical properties · Local DM shielding by BHc material → Reduction and nullification of gravitational acceleration g_local - Gravitational effects can be controlled arbitrarily by the shielding level S_BHc By combining gravity shielding and time control (C1 / C2 / C3), it is possible to create an integrated space for space navigation, experimentation, and defense. BHc materials can be used as a foundation for ultra-future technologies such as gravity manipulation, defense, and acceleration space formation. D2. Artificial gravity generation and control device (1) Basic concept This invention is a device that can freely set the direction and strength of gravity at any location by artificially inducing and controlling dark matter (DM) flux. By manipulating the local DM flow, it is possible to arbitrarily control the gravitational acceleration vector within an object or space. By combining it with D1 (gravity shielding), you can continuously adjust the gravity from zero to forced gravity. (2) Local gravity generation model Gravity vector due to artificially induced DM flow: g_artificial(r_obj) = G * ∫_V (rho_DM(r) * (r_vec - r_obj) / |r_vec - r_obj|^3) dV + g_control g_artificial(r_obj): Artificial gravity acting on object r_obj ·G: Gravitational constant ·rho_DM(r): induced local dark matter density distribution ·g_control: Arbitrary gravity correction vector by external DM flow control By adjusting the direction and density of the DM flow, the direction and size of g_artificial can be freely designed. (3) Structural design DM guidance device · Local DM flow formation using BHc / WHc gates and electromagnetic induction control Variable flux direction, velocity, and density Local spatial control Increases DM density in a specific area → Gravity Enhancement ·BHc shielding blocks inflow → Gravity reduction Multi-layer control structure - Multiple DM flow control layers allow precise design of gravity vectors - Arbitrary setting of gravity direction, gradient and strength (4) Application Examples Artificial gravity space generation - Generate arbitrary gravity inside a spaceship or laboratory - Gravity direction and strength can be freely set (from above Earth gravity to zero gravity) Local gravity control for defense and navigation · Forming a gravity flow around the spacecraft → Guiding and slowing down the colliding object ・Controlling object movement path by DM flow guidance Integrated control of time and inertia · In conjunction with the C1 / C2 device, it creates an advanced navigation and movement space that combines time acceleration / deceleration and gravity control. (5) Summary of physical properties Arbitrarily design gravity vector g_artificial by local DM flow control · Gravity strength and direction can be precisely adjusted by BHc / WHc gate control · Gravity control, time control, and acceleration space integration possible → Optimized for space navigation, defense, and experimental applications Artificial gravity generation and control is the core of the BHc / WHc technology system as a super-future space technology platform. E. Space navigation and defense technology E1. DM Barrier / Slowdown Barrier (1) Basic concept The DM Barrier / Deceleration Barrier is a defensive technology that rapidly decelerates a moving object by locally forming a high-density dark matter (DM) layer, thereby reducing the risk of collision. By using BHc materials to locally concentrate and control DM flow, a high-density DM layer is formed around the target. -The high-density DM layer generates inertial resistance to moving bodies, thereby reducing the speed of fast-moving objects such as spacecraft and meteorites. (2) Deceleration force model Deceleration force on a moving body due to local DM density F_DM: F_DM = - k_DM * rho_DM_local * v_obj F_DM: Deceleration force due to DM acting on the moving body ·k_DM: DM interaction coefficient (dependent on local density and shielding) rho_DM_local: Local DM density inside the barrier v_obj: Velocity vector of moving object High density DM layer → increase in rho_DM_local → increase in F_DM → rapid deceleration effect (3) Structural design DM barrier formation - Local DM flow is confined by surrounding it with BHc material, and concentrated in layers -Can create a multi-layered DM barrier around the target Barrier thickness and density control · Control the deceleration force and range by adjusting the layer thickness and DM density - Multi-layer structure provides optimal deceleration effect for moving objects at different speeds Dynamic Control - Barrier density and shape can be adjusted in real time by DM flow induction and opening / closing the WHc gate. - Localized reinforcement when a moving object approaches, and the ability to deactivate the barrier when not needed (4) Application Examples Spaceship Defense -Protects spacecraft from high-speed meteorites and debris - Form a DM barrier in advance to slow down and avoid contact Planet / Base Defense - Formation of a high-density DM layer around the planet → Deceleration and orbital change of the impacting object Space Navigation Support - Formed around the spacecraft as a deceleration barrier → Avoid collisions during high-speed travel (5) Summary of physical properties · Local DM concentration by BHc material → Formation of high-density DM layer Control the deceleration force of the moving body according to the DM density and barrier thickness Layered and multi-layered DM barriers disperse and reduce the velocity and energy of impacting objects - Can be used for multiple purposes, including spacecraft defense, planetary defense, and navigation support -Can be linked with other time and gravity control technologies (C1 / C2 / C3, D1 / D2) E2. DM Defense Cloud (Time Defense Shield) (1) Basic concept The DM defense cloud is a defense technology that deploys high-density dark matter (DM) around planets and space bases to artificially slow the approach speed and arrival time of foreign objects. A local increase in DM concentration affects physical reaction rates and inertia, causing the passage of time to slow down locally. Foreign objects experience a relative "time delay" when passing through an area of high DM concentration, effectively lengthening the time it takes to reach the target. (2) Local time delay model The relationship between local time tau and outer space (celestial) reference time t: d(tau) / dt = f(rho_DM_local) rho_DM_local: Local DM density around the planet d(tau) / dt = f(rho_DM_local) local DM density dependence function, df / drho_DM_local < 0 ·Arrival time T_eff(foreign object): T_eff = ∫_path (1 / f(rho_DM_local(s))) ds / v_obj s: Path of foreign object v_obj: Velocity of the foreign object The higher rho_DM_local(s), the greater T_eff → the longer the arrival time is compared to the physical distance. (3) Structural design Formation of dense DM clouds -Deploying a local DM-enriched layer around the planet using BHc materials and gate control -Cloud density, thickness and distribution can be freely designed Multilayer DM structure Inner layer: Maximum density → Forced time delay Outer layer: Gradual decay → Time gradient formation Foreign objects experience a local time delay each time they pass through a layer Dynamic Control Real-time density adjustment with WHc gates and BHc materials - Defense strength can be increased or decreased as needed (4) Application Examples Planetary Defense - Delays the approach of meteorites and hostile spaceships, increasing the time to intercept and evade them. - The physical distance remains the same, but the reach time is significantly increased, allowing for strategic defense. Spacebase Protection -High-density DM clouds surround critical facilities, reducing the risk of collisions with foreign objects Formation of a time-manipulated space - Works in conjunction with local time control (C1 / C3) to create a time delay / reaction delay space within the defense range. (5) Summary of physical properties · High-density DM cloud formation due to BHc material and local DM concentration -Local time delay effect extends the arrival time of foreign objects beyond their physical distance -Multi-layered structure and dynamic control allow you to adjust the defense strength of planets and bases -By combining with C1 / C3 devices, local time control, gravity control, and defense functions are integrated E3. DM High-Speed Tunnel (Faster-than-light travel) (1) Basic concept The DM high-speed tunnel is a technology that uses a BHc / WHc hybrid structure to locally minimize dark matter (DM) density, creating an ultra-high-speed transportation space with time acceleration, inertia reduction, and zero resistance. By blocking the DM flow with the outer wall of the BHc and cutting off the DM supply inside the WHc, the inside of the tunnel becomes an ultra-low density DM space. Within this space, the speed of physical reactions accelerates and the inertial resistance of moving bodies decreases, making it theoretically a transportation route that allows travel faster than the speed of light. (2) Local DM density and time-inertia model Minimizing local DM density rho_DM_local ~= rho_DM_min (inside the BHc / WHc tunnel) ·rho_DM_min: Minimum DM density BHc outer wall → External DM flow blocking · Inside WHc → DM supply cut off Local time acceleration d(tau) / dt = f(rho_DM_local) > 1 ·rho_DM_local is minimum → tau accelerates -Exercise: Internal time progresses faster than external time. Inertia reduction model F = m_eff * a m_eff = m_0 * g(rho_DM_local), dg / drho_DM_local > 0 m_eff: Effective mass (inertia) reduced under local DM low density ·g(rho_DM_local): local DM density dependence function ·dg / drho_DM_local > 0, so when rho_DM_local decreases, m_eff also decreases This results in a significant increase in acceleration with the same thrust. (3) Structural design Exterior wall (BHc material) Completely blocks external DM flow - Eliminates external interference inside the tunnel Inner space (WHc field) - Minimizing local DM density by cutting off DM supply ·Time acceleration ·Inertia reduction space formation Tunnel extension / multi-layer structure -Tunnel length can be freely designed - Fine-tune DM density for each inner layer to control the movement acceleration curve (4) Application Examples ultra-fast space transportation - Significantly reduced interplanetary and intergalactic travel times compared to previous models · Works in conjunction with C3 (time difference interface) to achieve time correction when entering and exiting Highly efficient material and personnel transport Reduced inertia minimizes physical load even during ultra-high speed transport Strategic Routes - Can be used in combination with DM Defense Cloud (E2) and Deceleration Barrier (E1) for tactical space navigation (5) Summary of physical properties ·BHc / WHc hybrid structure → Minimization of local DM density inside the tunnel Local time acceleration × reduced inertia × zero resistance → ultra-high speed movement environment · Tunnel extension · Multi-layer structure allows precise control of travel speed and acceleration ·Can be integrated with C1~C3, D1 / D2, E1 / E2 technologies → Can build a fully integrated ultra-high speed space navigation system F. Extraspace communication technology F1. Dark Matter Communication (1) Basic concept This invention is a technology that realizes high-speed, ultra-long-distance communication between the cosmos and outer space (celestial orbit) by using the fluctuation of dark matter (DM) density Δrho_DM as an information signal. ·Communication tunnels using BHc / WHc gates stabilize the local DM flow and minimize signal loss. - Ultra-long distance communication is possible without being bound by the physical speed of light, and it will become the foundation technology for intergalactic and inter-cosmic communication. (2) Communication Model DM density fluctuation signal S_DM(t) = Δrho_DM(t) = rho_DM(t) - rho_DM_rest S_DM(t): Transmit signal rho_DM(t): local DM density at time t rho_DM_rest: local DM density in the reference state Signal demodulation at the receiver S_DM_received(t) = f_transmit(S_DM(t)) + η_noise f_transmit: Transfer function through DM tunnel ·η_noise: Noise caused by external DM interference or tunnel disturbance Stabilizes f_transmit in BHc / WHc tunnels to minimize signal loss (3) Structural design Communication tunnel formation (BHc / WHc) · BHc outer wall → Shields DM flow and eliminates external interference Inside the WHc → DM supply is cut off and local DM density is stabilized Transmitting and receiving unit Δrho_DM Pulse Generation and Modulation Device High-sensitivity DM density sensor Synchronous Control Synchronous opening and closing of multiple gates maintains accurate signal timing · Two-way communication possible between outer space (Celestial Universe) and the space sphere (4) Application Examples Intergalactic Communication -Beyond the speed of light, high-speed communication between space spheres is possible Tenkai Swirl Interface Used to exchange information with outer space (Celestial Sea). Navigation and Control Communications Combined with E3's DM high-speed tunnel, it will enable position and time synchronization communication for ultra-high-speed spacecraft. (5) Summary of physical properties ·Local DM density Δrho_DM is used as an information signal -BHc / WHc tunnel stabilizes communication paths - Realizing ultra-long distance communication beyond the speed of light - Fundamental technology for coordinate information transmission and control communication between the space sphere and outer space (the heavens and the seas) F2. Dark Matter Coordinate Signal Transmitter (1) Basic concept This invention is a device that generates a local dark matter (DM) density pulse by synchronously opening and closing multiple BH / WH gate groups, and transmits coordinate information outside the cosmic sphere. By transmitting DM density pulses as coordinate information to outer space (the heavens and the seas), ultra-long-distance, high-precision location information communication that is not bound by the speed of light is realized. ·Synchronous control of the BHc / WHc gate group minimizes information errors and dispersion. (2) Coordinate signal generation model Coordinate information conversion X_coord(t), Y_coord(t), Z_coord(t) → Δrho_DM(t) Coordinates (X, Y, Z) sent to the outside of the space sphere are encoded into the local DM density fluctuation Δrho_DM Coordinate data is expressed as a synchronous pulse train at time t Transmitted signal S_coord(t) = E_{i=1}^{N_gate} Δrho_DM_i(t) * f_gate(i) *Here, S_coord(t) is the sum of the contributions of each gate from i=1 to N_gate. N_gate: Total number of gates to synchronize Δrho_DM_i(t): local DM density pulse generated by each gate f_gate(i): Transfer function of each gate - Coordinate information can be transmitted with high accuracy over long distances by synchronizing multiple gates (3) Structural design BH / WH gate group -BHc material exterior walls block external interference · Controlling DM supply inside the WHc to stabilize local DM density pulses Synchronous Control Unit -Precise control of opening and closing timing of multiple gates Coordinate information is accurately encoded and transmitted as a DM pulse Transmission Range Design Controlling the spatial spread of DM pulses - Coordinate information can be transmitted to a wide area outside the space sphere (4) Application Examples Interspheric navigation -Transmitting location information from outer space (Celestial Sphere) to the space sphere · Application to coordinate correction and guidance for spacecraft traveling at ultra-high speeds Intergalactic Coordinate Communication -Long-distance location information transmission beyond the speed of light -Combined with DM communication (F1) for two-way control Integration with outer space (Celestial Sea) connection interface · In conjunction with H2 technology, it achieves precise position synchronization and control between outer space (the heavens and the sea) and the space sphere. (5) Summary of physical properties -Synchronized opening and closing of multiple BH / WH gate groups generates local DM density pulses ·Δrho_DM pulse is transmitted to outer space (the heavens and the sea) as coordinate information - Realizes ultra-long distance and high-precision coordinate communication beyond the speed of light limit -Can be integrated with F1 DM communication and H2 celestial body connection interface Fundamental technologies for ultra-future space navigation, navigation, and control systems G. Cosmic sphere / outer space (celestial orbit) structure model G1. Multilayer cosmic structure (1) Basic concept This invention proposes a layered structure model consisting of a cosmic sphere and outer space (the heavens and the sea). This theoretical foundation enables a hierarchical integrated analysis of the flow, time evolution, and gravitational behavior of dark matter (DM). · Each layer interacts with the other through the BHc / WHc gate, allowing for a comprehensive representation of the dynamics of the entire universe. (2) Multilayer structure model Layer structure and DM flow Universe Bubble : DM_UB(t, x, y, z) Meta-Fluid Universe : DM_MFU(t, X, Y, Z) -Representation of DM density distribution in each layer Interlaminar DM flow moves through the gate: Phi_DM_UB→MFU = f_gate_BHc / WHc(DM_UB, DM_MFU) Integrated time-gravity model dτ / dt = F(rho_DM_local) g_local = G * f(DM_flow) · Local DM density rho_DM_local affects time progression dτ / dt ·DM flow Phi_DM induces local gravity g_local (3) Structural design / interlayer interaction space sphere Contains matter, planets, and civilizations ·DM flow is confined inside by BHc membrane Outer space (Amami Senyu) · Communication and control between space spheres via DM is possible ·Local DM density control by WHc / BHc gate Upper tier DM reservoir ·Overseeing the collective dynamics of space spheres -Integrates time, gravity, and communication phenomena through interlayer DM flow (4) Application Examples Cosmodynamics analysis -Used as an integrated model of DM flow, gravity, and time change Simulation of inter-spherical interactions and gravitational phenomena Optimizing navigation and communications · Optimize inter-level navigation routes and coordinate information transmission in conjunction with the E3 high-speed tunnel and F1 / F2 communications Multi-layered defense and control strategies - By operating the BHc / WHc gates at each layer, defense, time control, and gravity control are managed hierarchically for each planet and space sphere. (5) Summary of physical properties - Layered structure integrates local DM density, flow, time, and gravity ·Ability to analyze and control phenomena in units of the cosmos and outer space (celestial orbit) · BHc / WHc gate manipulation enables artificial control of interlayer dynamics -Can be used as a fundamental theory for navigation, communication, defense, time control, and gravity control throughout the universe G2. DM impermeable membrane structure of space sphere (1) Basic concept This invention is a membrane structure technology that confines internal dark matter (DM) and shields external DM by forming the outer wall of a space sphere using black hole type space gate closure material (BHc material). - Stabilizing the DM density inside the space sphere controls and stabilizes the local environment of gravity, time, and matter behavior. Due to the properties of the BHc material, the space sphere membrane functions as a "DM impermeable barrier" that does not allow external DM flow to pass through and does not allow internal DM to escape to the outside. (2) Membrane structure model Internal DM confinement model rho_DM_internal(t) ~= constant Phi_DM_external→internal = 0 Phi_DM_internal→external = 0 rho_DM_internal: Local DM density inside the space sphere · Phi_DM_external→internal: DM flow from outside · Phi_DM_internal→external: DM flow from internal to external The BHc membrane blocks DM flow in both directions, stabilizing the internal DM density. Local time-gravity stabilization dτ_internal / dt = f(rho_DM_internal) ~= constant g_internal = G * f(Phi_DM_internal) ~= constant The stabilization of rho_DM_internal leads to the uniformity of the time velocity dτ_internal / dt and the local gravity g_internal inside the space sphere. (3) Structural design BHc film layer formation - Cover the entire outer wall of the space sphere with BHc material Completely shields external DM flow and confines internal DM Film thickness and multi-layer design -Multiple BHc layers can be placed inside and outside Prevents external interference and internal DM loss, ensuring structural redundancy Integrated Gate Control -Micro-gates (BHc / WHc) integrated into the membrane enable localized DM flow control. - Tweaked the physics environment inside the space sphere (4) Application Examples Stabilization of the interior of the space sphere - Uniform internal gravity, time, and material behavior, forming a stable foundation for planetary and civilizational activities Interspherical dark matter control - Shielding external DM through the space sphere membrane minimizes interference from inter-layer communication and outer space (heavenly seas). Defense / isolation function Combined with internal time and gravity control, it can also function as a defensive barrier (5) Summary of physical properties Complete DM shielding and internal confinement with BHc material membrane - Stabilized local DM density, gravity, and time progression inside the space sphere Internal gate control for fine adjustment The space sphere will function as an "autonomous stable system" to provide a foundation for navigation, communications, and defense. H. Ultra-Future Technology Package H1. Gravity Nullifier (1) Basic concept This invention is a technology to create a "zero gravity object" that is completely unaffected by gravity using an object made only of BHc material. The BHc material blocks the attraction of dark matter (DM) from the surroundings, and the object itself does not generate DM, creating a state where it is completely independent of the surrounding gravitational field. It is possible to make it stand still or move anywhere inside the space sphere or in outer space (the heavens and the sea) without being affected by gravity. (2) Physical Model Gravity nullification by local DM shielding Phi_DM_surrounding → BHc_object = 0 Phi_DM_object → surrounding = 0 g_effective = G * f(Phi_DM_effective) ~= 0 ·Phi_DM_surrounding: DM flow from the surroundings to the object ·Phi_DM_object: DM flow from object to surroundings g_effective: local gravity acting on the object ·BHc material blocks Phi_DM, g_effective ~= 0 Independent time effects dτ_object / dt = f(rho_DM_local) ~= constant - The local DM density inside the object is not affected by the outside, so time progression is stable and does not depend on the external environment. (3) Structural design Outer shell made of BHc material The entire exterior wall is covered with BHc material to completely block the surrounding DM flow. - Internal gate is also BHc to eliminate contact with external DM Object shape / application design -Applicable to any shaped object (vehicles, devices, equipment, etc.) - Local gravity shielding for applications in spacecraft, experimental equipment, sensors, etc. Integrated Control By adjusting the thickness and placement of the BHc layer, the range and strength of gravity shielding can be controlled. (4) Application Examples Space Travel and Transportation - A completely weightless object that can be freely placed and moved in space - Combine with the D2 artificial gravity generator to create a gravity environment anywhere Physics Experiments and Research - Construction of an experimental space that is not affected by external gravity High-precision measurements and quantum experiments Defense and security applications - Forming a zero-gravity barrier around planets and in outer space Used for inertia control of fast moving objects (5) Summary of physical properties BHc material prevents the object from generating and attracting DM g_effective ~= 0 → Complete weightlessness achieved -Local time progression is stable and does not depend on external DM - Possible future applications such as space navigation, experimental space, and defense equipment H2. Outer Space (Tenkai Senu) Connection Gate (1) Basic concept This invention is a super-future interface device that directly connects the outside of the cosmic sphere with the higher outer universe (the heavens and seas) by synchronously opening and closing a group of BH (black hole type) gates on a scale of tens of thousands to hundreds of billions. By synchronously controlling the gate groups, the flow of dark matter (DM), matter, and information can be stabilized, enabling ultra-long distance communication, transportation, and matter transfer beyond the speed of light. -By integrating the BHc membrane and WHc field on the outer wall of the space sphere, the interlayer dynamics can be precisely manipulated. (2) Gate connection model Interlaminar DM flow control Phi_DM_UB→Meta = Σ_{i=1}^{N_gate} f_gate_i(Δrho_DM_i, t) Phi_DM_Meta→UB = Σ_{i=1}^{N_gate} f_gate_i(Δrho_DM_i, t) N_gate: Total number of synchronized BH gates Δrho_DM_i: Local DM density change at each gate f_gate_i: Gate transfer function - Precise control of DM flow between the space sphere and outer space (the heavens and the earth) Material and information transport control Phi_matter(t) = g(Σ f_gate_i(t), DM_density_field) Phi_info(t) = h(Σ f_gate_i(t), DM_pulse) ·Synchronization of gate groups stabilizes the flow of materials and information -Can be integrated with DM pulse-based information communication (F1 / F2) and material transport (E3 high-speed tunnel) (3) Structural design Synchronous placement of a large number of gates -Spatial arrangement of tens of thousands to hundreds of billions of tiny BH gates -Synchronized opening and closing creates a large gate surface BHc / WHc integrated control -BHc outer wall shields surrounding DM ·DM supply and flux control inside WHc - Realizes stable connection between the outer wall of the space sphere and the Celestial Universe Dynamic Control Unit - Real-time adjustment of interlayer DM density, flow velocity, and direction - Optimization of material and information distribution (4) Application Examples Communication between space sphere ⇔ outer space (Tiankai Senyu) Stabilizing long-distance transmission of F1 / F2 dark matter communications - Fundamental technologies for inter-spheric navigation and information transmission Ultrafast mass transport · Works in conjunction with the E3 DM high-speed tunnel to achieve safe and fast interlayer mass transfer Multi-layer space control -Integrated with G1 / G2 multi-layer space structure to precisely control the DM density, time, and gravity behavior of the space sphere (5) Summary of physical properties -Synchronized opening and closing of tens of thousands to hundreds of billions of BH gates Direct connection between the space sphere and outer space (the heavens and the sea) - Stabilize the flow of dark matter, matter, and information between layers - Realizing communication, transportation, and physical control beyond the speed of light limit - Can be integrated with H1 / H2 / BHc / WHc technologies to provide a space-scale ultra-future operation system Effect of the invention: This invention is a comprehensive package of ultra-future space technology that integrates the following technological systems in order to overcome the constraints of physical laws and space navigation and communication technology. Integration of foundational theories A1: A dark matter fluid universe model provides a unified interpretation of gravity, time, and matter behavior as dark matter flux. A2 Using the cosmic gate theory, we model the flow between the cosmic sphere and outer space (the heavens and the seas) by using a tiny black hole inside matter as the exit gate for dark matter and the zero-point fluctuation of the vacuum as the entrance gate. · Establishing a theoretical foundation for hierarchical analysis and control of the behavior of the entire universe through fundamental theory. Integrated time and gravity control ·C1 / C2 / C3 time control technology realizes time delay, acceleration, and differential control on a local and large scale. D1 / D2 gravity control technology allows for gravity shielding and the generation of artificial gravity of any direction and strength. ·H1 Gravity Nullification Device allows for the creation of a localized zero gravity space. - It is possible to freely manipulate the local environment inside and outside the space sphere, and precisely control physical reaction speed, inertia, and motion behavior. Integrated control of dark matter flow, gravity, time, and material behavior By blocking DM suction with BHc material and blocking DM supply with WHc field, it becomes possible to freely manipulate local DM density. By increasing or decreasing the local DM density, it is possible to control the gravitational field and the local time progression speed, and to precisely adjust the behavior of matter (inertia, motion, reaction speed) inside the space sphere. Local manipulation allows for time delay, acceleration, and gravity shielding at the experimental / device level. This control allows for the creation of time acceleration / deceleration spaces and inertia reduction spaces. · Local and large-scale DM flow control becomes possible by synchronizing the opening and closing of BHc / WHc gate groups (micro to cosmic scale). -By controlling the shielding and supply using the BHc / WHc gate group, it becomes possible to indirectly manipulate gravity, time, and matter behavior through local changes in dark matter density. By integrating with DM barriers, defense clouds (E1 / E2) and high-speed tunnels (E3), we will provide fundamental technologies that support space navigation, defense and ultra-high-speed transportation. Integration of Space Navigation and Defense Technologies E1 / E2 High density DM layer collision defense / time defense shield can be constructed. The E3 DM high-speed tunnel simultaneously achieves faster-than-light transport, inertia reduction, and time acceleration. - Integrated control of the internal and external space of the space sphere to create a safe and efficient navigation environment. -It will be possible to comprehensively control defense, transportation, and navigation technologies from local experimental spaces to planetary and space sphere scales. Space sphere ⇔ outer space (celestial orbit) communication, coordinate transmission, material transport, ultra-high speed navigation DM communication technology enables information transmission between the space sphere and outer space (the heavens and the sea) beyond the speed of light. ·F2 coordinate signal transmitter enables accurate location information to be transmitted to outer space (the heavens and seas). ·H2 The Heavenly Sea Spiral Connection Gate stabilizes the flow of matter, information, and DM between the space sphere and outer space (Heavenly Sea Spiral), integrating communication, transportation, and analysis. The Tenkai Senu connection gate allows for the safe transfer of matter and energy between outer space (Tenkai Senu) and the outer space. BHc / WHc gate operation, combined with time, gravity, and inertia control, can optimize the safety and efficiency of defense spaces and navigation routes. By utilizing the BHc / WHc hybrid tunnel (DM high-speed tunnel), ultra-high-speed transportation and faster-than-light travel can be achieved through time acceleration, inertia reduction, and zero resistance. Space sphere, outer space (celestial space), structural management, environmental control ·G1 Based on the multi-layered cosmic structure model, it is possible to analyze the hierarchical dynamics between the cosmos and the outer space (celestial orbit). ·G2 The outer wall of the space sphere can be formed with a BHc film, which can confine the internal DM and shield the external DM. · Inter-layer control and integrated operation can stabilize time, gravity, and material behavior inside and outside the space sphere. The BHc membrane on the outer wall of the space sphere confines the internal DM density and stabilizes the environment. -Gravity nullification devices and artificial gravity control technology allow the direction and strength of gravity to be controlled in any local space. By combining time delay caused by a high-density DM field and time acceleration caused by a low-density DM field, precise manipulation of local time becomes possible. - Based on a layered structure model of the cosmic sphere and outer space (the heavens and the sea), DM flow, time, gravity, and material behavior can be analyzed hierarchically. Through the prediction, control, and optimization of dynamics on a global scale, we will be able to establish the theoretical foundations for future space navigation, communications, and defense technologies. Summary - It will be possible to freely control gravity, time, and material behavior on local and cosmic scales. - Communication, coordinate transmission, and material transport beyond the speed of light can be realized. Space defense, ultra-high speed navigation, and the construction and integration of time acceleration / deceleration spaces will become possible. -It will be possible to analyze and control the entire universe by utilizing multi-layer space structures. It can provide an integrated space-scale technology system that was not possible with conventional physics, navigation, and communication technologies. 8. Conclusion This invention is a system that integrates gravity, time, matter, DM, communication, and navigation control on a cosmic scale, which is impossible to achieve with current technology, and provides a comprehensive package of far-future space technology that will serve as the foundation for future space navigation, defense, and communication technologies. *As an addendum, below are three proposed embodiments of the "new dark matter detection method" based on the theory of this invention. [Dark matter detection method proposal 1] <Detecting dark matter density fluctuations using an optical lattice clock network (recommended location: Japan)> (1) Purpose / Principle We assume that the time variation of the local dark matter density rho_DM contributes to the local proper time progression dτ / dt. Since the output frequency f(t) (= atomic transition frequency) of the optical lattice clock is directly linked to the local time progression, we extract the common fluctuation component of rho_DM by residual analysis of the simultaneous observation data of optical lattice clocks at multiple locations. Simplified model (linear approximation): Δf(t) / f0 ~= K · Δrho_DM(t) + ε(t) where K is the sensitivity coefficient of the clock frequency to the DM density (model dependent), and ε(t) is the measurement noise. (2) Device configuration (example of network configuration) Multiple optical lattice clocks (Sr, Yb, etc.) (e.g., sites A, B, C, D). Each clock will have a short-term stability of 1e-18. Each clock is equipped with an optical frequency comb for measuring frequency ratios. -Frequency / phase transfer line (synchronization between bases) using a highly stable optical fiber link (bidirectional optical fiber) and a satellite link as backup. · Local environmental monitors (temperature, humidity, air pressure, ground vibration, geomagnetism, electromagnetic field, radiation, etc.) are installed at each base. Both indoor and outdoor locations should be included, including one underground base (tunnel or deep research pit) if possible. Data collection server (centralized time stamp), secure data synchronization and sharing infrastructure (including logs and metadata). (3) Measurement procedure 1) Standardization and initial calibration of each clock (in accordance with existing international time coordination). 2) Calibrate the phase / frequency propagation delay between locations using optical fiber links (delay correction through bidirectional measurements). 3) In continuous observation mode, atomic clock data f_i(t) is recorded with high time resolution (e.g., 1 s to 1 min), while environmental data is simultaneously collected with the same time stamp. 4) Accumulate synchronization data over a long period of time (investigate: continuous monitoring, regular backup). (4) Data preprocessing and analysis pipeline 1) Time alignment and delay correction: Optical fiber delay correction, equipment delay, and timestamp alignment on both sides. 2) Removal of known effects: tides, gravitational potential differences (redshift due to height differences), temperature dependence, electromagnetic interference, and local operational events (such as cooling cycles) are subtracted in the physical model. 3) Common mode extraction: Extract common components from data from multiple locations using principal component analysis (PCA), independent component analysis (ICA), and multivariate regression. 4) Time-frequency analysis: Analyzes low-frequency components (μHz to mHz range) using short-time Fourier transform (STFT) and wavelet analysis. 5) Cross-correlation and delay analysis: Calculates the cross-correlation between locations and determines whether the signals are occurring simultaneously or propagating with a delay (whether it is a local or global phenomenon). 6) Statistical evaluation: Bayesian model comparison was used to evaluate the likelihood ratio of "dark matter model + background" vs. "background only." Significance was evaluated using FDR (false discovery rate) control and bootstrap. 7) Evaluation of azimuth and annual modulation: Check for directional dependency corresponding to the galactic motion of the Earth and the presence or absence of annual modulation due to the Earth's revolution (contributing to signal direction). (5) Noise removal and validation Environmental regression: Residuals are extracted using multivariate linear / nonlinear regression with explanatory variables such as air pressure, room temperature, and power supply fluctuations. - Excluding earthquakes and artificial vibrations: Earthquakes and artificial vibrations are detected and excluded using a seismometer. Injection test: Inject an artificial correlation signal into the data to verify the repeatability and detection algorithm. - Underground vs. surface comparison: If simultaneous observations show smaller amplitudes at the underground base than at the surface, this strengthens the evidence for DM origin. Retesting with an independent dataset: Confirming the same characteristics over a different period and on a different device. (6) Expected signal characteristics -Low frequency (hours-days) components that appear simultaneously on a global scale. Amplitude corresponds to frequency deviation of 1e-18 to 1e-16 level. - The phase difference between the stations is small, and it contains small modulations corresponding to the annual component and galactic flow direction. - Amplitude reduction or phase difference change at underground bases. [Dark matter detection method proposal 2] <DM flux and divergence detection method using a (ultra-sensitive) gravimeter network> (1) Purpose / Principle Based on the model that the divergence (div J_DM) of the dark matter flux J_DM generates local gravitational acceleration g(r), we will detect microgravity fluctuations on the surface and underground using a group of ultra-sensitive gravimeters, and analyze the spatial and temporal correlations to identify the origin of DM. (2) Equipment configuration - A network of multiple superconducting gravimeters (e.g., supergravimeters). -Used in conjunction with an atom gravimeter / atom interferometer. -Combination of high-sensitivity underground gravity observation points (pits and tunnels) and surface observation points. Surrounding environment measuring instruments (seismic meters, groundwater level meters, barometers, thermometers, etc.). ·Data collection and synchronization infrastructure (GPS / fiber time synchronization). (3) Measurement procedure 1) Calibration of each gravity meter (measurement of reference gravity difference, drift correction). 2) Simultaneous collection over a network (time resolution depends on the device: 1 s to 10 s). 3) Geological and hydrological data, as well as tidal models, are collected. 4) Observe at multiple depths to extract depth dependence. (4) Analysis Pipeline 1) Tidal correction and removal of steady-state gravitational fields (ocean tide model, solid earth tide). 2) Removal of seismic and anthropogenic noise (spectral filtering, multi-station differential method). 3) Spatial mode decomposition: The network observations are decomposed using spherical harmonics or spatial kernels to extract local divergence modes. 4) Correlation analysis: As with clock analysis, simultaneity is confirmed by cross-correlation between bases. 5) Statistical validation: Components that cannot be reproduced by geophysical processes are extracted through numerical simulation, and the likelihood of the DM model is calculated. (5) Noise countermeasures and verification - Underground installation is effective in reducing ground noise. Seasonal changes in water level and soil wetness affect gravity and are therefore excluded from the long-term trend. -Verify device response with artificial signal injection (small mass movement). - Rules are established to exclude coincidences with known geophysical phenomena (volcanoes, earthquakes, tides). (6) Expected signal characteristics The frequency band focuses on extremely low frequencies (μHz to mHz). A mode that exhibits spatially localized divergence (where the positive and negative gravity fluctuation patterns at a certain point are reversed in the vicinity). - There is synchronicity between bases, and the large-scale simultaneous changes cannot be explained by internal processes (crustal flow). [Dark matter detection method 3] <Optical phase fluctuation observation method using underground long baseline optical interferometer> (1) Purpose / Principle Based on the assumption that the presence of a local low-density DM region (corresponding to WHc) causes a small change in the phase velocity of light (or the phase fluctuation of light), the spatial gradient of rho_DM is detected by measuring the difference in the phase fluctuation of light using a laser interferometer with a long underground baseline. (2) Equipment configuration Long baseline laser interferometer (long one-way baseline L >= several hundred meters to km). The interferometer is installed in a quiet underground tunnel. Frequency-stabilized laser + fiber transmission network + reference light chamber (vacuum measurement line). · Suspension and vacuum plumbing, temperature controlled optical bench. · Environmental sensors (underground wind, temperature, pressure, vibration). Phase detection system (homodyne / heterodyne detector). (3) Measurement procedure 1) Build an interferometer to stabilize the laser. Distribute the reference laser light to both ends. 2) The interference phase is continuously measured, and high- and low-frequency components are separated and stored. 3) Simultaneous observations are made with a ground reference interferometer or another tunnel interferometer, and the difference is calculated. (4) Analysis Pipeline 1) Phase noise pre-compensation: optical fiber delay, temperature fluctuation correction. 2) Noise hierarchical decomposition: Separation of high frequencies (earthquakes and mechanical vibrations), mid-frequency (underground fluid dynamics), and low frequencies (DM candidates). 3) Spatial gradient recovery: The first-order gradient of rho_DM is solved as an inverse problem from the phase difference by arranging multiple interferometers. 4) Mode separation and statistical analysis: Check consistency by comparing with the above atomic clock and gravimeter data (multimodal correlation). (5) Noise countermeasures and verification · The underground location should be selected to minimize surrounding man-made noise and atmospheric fluctuations. - Temperature and pressure changes are strictly controlled and recorded. - It is desirable to operate the optical system in a high vacuum (10^-6 Pa or less). - Validate the restoration algorithm by injecting artificial phase variations. (6) Expected signal characteristics - There is a significant deviation in the difference with the ground in the low frequency band (hours-days) of the optical phase. · A consistent spatial gradient (low density pockets in rho_DM) can be recovered from the phase difference of multiple interferometers. · Unlike other geophysical processes, the spatial geometry is conclusive if it matches the DM flow model. Common analysis and verification 1) Multimodal simultaneous observation: Simultaneous analysis of clock, gravity, and interferometric phases to eliminate spurious signals (earthquake, meteorological, and human-caused). 2) Causality determination based on correlation: Distinguish between DM flow (external origin) and local phenomena through causal analysis based on time delay and spatial distribution. 3) Model-based validation: Using the A1 / A2 theoretical formula (g ~= -div J_DM, dτ / dt = f(rho_DM), etc.), Bayesian estimation of parameters (K, k_BH, D_DM, etc.) is performed from observed data. 4) Artificial signal injection: A known pseudo signal is injected into the observation device group to evaluate the sensitivity and false detection probability of the detection chain. 5) Disclosure and replication: To facilitate independent verification, some of the raw data will be made public (anonymized and with metadata attached) so that replication can be performed using independent data from other institutions.
Claims
1. (Dark matter fluid universe model) A space technology system that treats dark matter as a fluid that fills the entire universe, enabling integrated control of local and large-scale time, gravity, and material behavior as changes in the dark matter flow.
2. (Space Gate Theory) A space technology system that treats tiny black holes inside matter as dark matter exit gates and vacuum zero-point fluctuations as dark matter entrance gates (white holes), making it possible to control the flow of dark matter through a gate structure between the cosmic sphere and outer space (the heavens and the sea).
3. (Black hole type space gate closure matter) A device that can block the local dark matter flow by closing the dark matter suction gate, creating matter that does not generate gravity or is not affected by gravity.
4. (White hole type space gate closed vacuum field) A device that creates a localized low-density dark matter space by closing the dark matter supply gate, making it possible to accelerate time and create a high-speed travel tunnel.
5. (BHc / WHc hybrid structure) The device's outer wall is made of BHc and the inner space is made of WHc, minimizing the local dark matter density and enabling time acceleration, inertia reduction, and ultra-high speed transportation.
6. (Time delay device using high dark matter density field) A device that increases the local dark matter density by shielding the local dark matter flow with BHc material, slowing or stopping time.
7. (Time acceleration device using low dark matter density field) A device that reduces the local dark matter density by cutting off the dark matter supply using a WHc field, thereby accelerating the progression of local time.
8. (Time-delay interface technology) A device that connects accelerated space and normal space, making it possible to control the difference in the speed at which local time progresses.
9. (Gravity shielding technology) A device that uses BHc material to block the attraction of dark matter from its surroundings, making it possible to create objects that are not affected by gravity.
10. (artificial gravity generation and control device) A device that can induce local dark matter flows and arbitrarily set the direction and strength of gravity.
11. (Dark Matter Barrier / Slowdown Barrier) A device that uses a high-density dark matter layer to rapidly decelerate a moving object, making it possible to protect against collisions with meteorites, spacecraft, etc.
12. (Dark Matter Defense Cloud) A device that envelops a planet or region of space in a high-density dark matter cloud, delaying the arrival time of foreign objects beyond their physical distance.
13. (Dark Matter High-Speed Tunnel) A device that minimizes local dark matter density using a BHc / WHc tunnel structure, enabling time acceleration, inertia reduction, and ultra-high-speed transportation.
14. (Dark Matter Communication) A device that uses fluctuations in local dark matter density as a signal to enable ultra-long distance communication and coordinate information transmission between the cosmos and outer space (the celestial orbit).
15. (Dark Matter Coordinate Signal Transmitter) A device that can transmit coordinate information outside the space sphere by synchronously opening and closing multiple BH / WH gate groups.
16. (Layered space structure model) A structure that utilizes the layered structure of the cosmic sphere and outer space (the heavens and the seas) to enable integrated analysis and control of dark matter flow, time, and gravitational behavior.
17. (DM impermeable membrane structure of space sphere) The outer wall of the space sphere is made of BHc material, which confines the internal dark matter and shields the external dark matter, thereby stabilizing gravity, time, and material behavior inside the space sphere.
18. (Gravity Nullifier) An object made entirely of BHc material that is completely unaffected by external gravitational fields and can achieve a state of zero gravity.
19. (Tenkaisenyu connecting gate) A device that directly connects the outside of the cosmic sphere with outer space (the heavens and seas) by synchronously operating a group of BH gates on a scale of tens of thousands to hundreds of billions, thereby realizing the stable flow of dark matter, matter, and information.