Interface for targeted modification of material structures, states and processes by modulation of the quark-gluon exchange
Patent Information
- Application Number
- PCT/EP2026/057823
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2025-03-25
- Filing Date
- 2026-03-19
- Publication Date
- 2026-10-01
Smart Images

Figure EP2026057823_01102026_PF_FP_ABST
Abstract
Description
[0001] -06-2025-42363301-Main Post Office-0007
[0002] Annex 3 Description of patent application TL-001 dated 25.03.2025
[0003] Description:
[0004] Title: Interface for the targeted modification of material structures, states and processes by modulation of the quark-gluon exchange. Technical field: The present invention relates to the technical field of quantum physics, quantum information technology, quantum mechanics, in particular the application of quantum logic, quantum entanglement and quantum chromodynamics for the direct reprogramming, control, regulation, measurement, conversion and influencing of subatomic, atomic and molecular processes, states and structures, as well as the use of the atomic code for the targeted reprogramming of subatomic, atomic and molecular structures and for enabling programmable matter by means of this technical interface.
[0005] State of the art: Current technologies enable the control, measurement, manipulation, and transformation of atoms and molecules, as well as in the subatomic realm, primarily through chemical or physical processes occurring at the macroscopic or molecular level. Precise, direct control at the quark-gluon level or the use of an atomic code to reprogram atomic states has not yet been achieved.
[0006] Problem statement: The precise manipulation, conversion, control, and measurement of atomic, subatomic, and molecular structures is essential for numerous applications, such as medical therapies, materials science, and genetic manipulation. However, current technologies are reaching their physical and methodological limits in terms of accuracy, energy consumption, flexibility, and the ability to create matter in a targeted and programmable manner.
[0007] Solution to the problem: The present invention describes a quantum-logical and / or quantum-entangled technical device, an atomic code interface, which, based on quantum mechanical principles and quark-gluon exchange (QGA) as well as the atomic code, enables the direct control of atomic processes. By means of a synchronized network of quantum-entangled states, subatomic, atomic, and molecular processes and states as well as structures are precisely controlled, measured, and selectively reprogrammed in order to bring about molecular and material changes and thus enable programmable matter.
[0008]
[0009] -06-2025-42363301-Main Post Office-0008
[0010] Additional section:
[0011] The atomic code as the natural control protocol of the natural quantum computer in quark-gluon exchange
[0012] Within the scope of this invention, the quark-gluon exchange within the atomic nucleus is considered a naturally occurring quantum computer. This natural quantum computer operates through the dynamic interaction of quarks and gluons, whose quantum mechanical states (e.g., color charge, spin, coupling strength) exist in a highly dynamic equilibrium and are regulated by the atomic code (similar to DNA regulation in cellular systems). The atomic code is the abstract, systematic description and regulation of these interactions. It defines how state changes can be initiated through targeted internal and external interventions (e.g., via quantum-entangled control pulses) in order to selectively alter chemical properties, binding energies, and electron orbitals.
[0013] The atomic code thus serves both as a control protocol within the natural system itself and—through the interface described here—as a technical means of accessing subatomic reactivity. By selectively manipulating quantum mechanical parameters of the nucleus, it enables higher-level control of atomic states. For example, combining it with entangled control quanta opens up the possibility of targeted reprogramming of individual atoms. This mechanism can be used, among other things, for the development of self-modifying molecules, reconfigurable materials, or genetically controllable biological subsystems.
[0014] Beneficial effects:
[0015] • Enables precise regulation, control, measurement, manipulation and reprogramming at the subatomic, atomic and molecular level.
[0016] • Enables the precise conversion of elements.
[0017] • Allows targeted therapeutic interventions at the subatomic, atomic and molecular level, especially in cancer therapy.
[0018] • Enables the creation of programmable matter through targeted control of subatomic, atomic, and molecular properties.
[0019] • Opens up new avenues for the development of artificial, synthetic, and hybrid DNA and RNA sequences.
[0020] • Opens up new avenues in quantum computing, quantum computers, AI and AGI
[0021] • Opens up new avenues for combating climate change (e.g., conversion of CO2 into preferred elements) / )
[0022]
[0023] -06-2025-42363301-Main Post Office-0009
[0024] Exemplary Implementation: The interface utilizes quantum-entangled and / or synchronized states between a control system and specific target atoms or molecules. By selectively modifying quantum mechanical parameters such as spin, color charge, or energy states of quarks and gluons, based on the atomic code, the chemical and physical properties of the target atoms or molecules can be influenced, measured, transformed, and actively reprogrammed. This method allows, for example, the precise modification of DNA structures for medical applications or the development of novel materials whose properties are programmable and dynamically controllable via the atomic code. Technical Exemplary Implementation: An exemplary system for implementing the invention consists of:
[0025] • a superconducting qubit chain (or qubit chain) as a control structure,
[0026] • an entanglement module (e.g. based on photonic parametric down-conversion),
[0027] • a target module with an atomic gas chamber for positioning individual target atoms,
[0028] • a spectrum resonance field for generating targeted color charge modulation, • a feedback unit for dynamically adjusting the interaction within the subsystem. The system's control pulses are calibrated by quantum-based feedback loops to adjust atomic states in real time and to enable reversible testing of the effect.
[0029] • A hardware- and software-based input level that allows input to be made to the interface via coded control protocols using modulated quantum mechanical impulses (e.g., photon patterns, vector potentials) or via a software-based operator structure (e.g., atomic code operators). The impulses and operators define the target vector, modulation level, target location, and duration of the desired quantum intervention as well as the reprogramming of matter.
[0030] The patent drawing illustrates the schematic operating principle and connection of the individual modules. The embodiment shown in the patent drawing serves only to illustrate a possible system configuration. The scope of protection of the invention is defined exclusively by the patent claims.
[0031] The system is designed to operate with high control and measurement precision in the range of 10 to 300 watts. Targeted modularization, superconducting logic structures, and photonic signal processing enable an energy-efficient and miniaturizable implementation. The manipulation of the quark-gluon exchange is not achieved through macroscopic energy input, but rather through highly precise quantum logic coupling, which is structurally linked to the state parameters.
[0032] l 2S'2-'>'-06-2025-42363301 -Main Post Office-0010
[0033] of the system. Energy consumption remains minimal because it is not the reaction itself, but its control point that is addressed. This results in extremely high efficiency with optimal cost-benefit improvement.
[0034]
[0035] -06-2025-42363301 -Main Post Office-0011
[0036] Reference symbol list:
[0037] 1 Input level (hardware and software, operators)
[0038] 2 Qubit / Quitritt chain (control structure)
[0039] 3 Entanglement module (Photonic PDC)
[0040] 4. Spectrum - Resonance field (modulation e.g. color charges)
[0041] 5 Target module (Atomic gas chamber)
[0042] 6 Feedback Unit (Feedback States)
[0043]
Claims
-06-2025-42363301 -Hau ptpost-0013 OÄ” O6~Ä02'E“'4Ä3'ES3©l""'HauP'^'P©s'i'”'@Ol-3 Annex 4 Claims to patent application TL-001 dated 25.03.2025 Claims:
1. Technical device consisting of an interface which uses quantum mechanical states and / or the atomic code for the direct control, regulation, conversion, measurement and reprogramming of subatomic, atomic and molecular processes, states and structures.
2. Methods for influencing, measuring, controlling, converting and reprogramming subatomic, atomic and molecular processes, states and structures, characterized in that quantum entangled states and / or an atomic code are used or manipulated to selectively control the quark-gluon exchange.
3. Use of the device according to claim 1, e.g., for enabling programmable matter, synthetic and hybrid atoms and molecules, as well as artificial and hybrid genetic systems. Furthermore, it can also be used for the conversion of elements. The list of applications given here is exemplary and not exhaustive.