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Rubidium atomic frequency standard microwave cavity resonator

A technology of microwave resonant cavity and rubidium atomic frequency standard, which is applied in resonators, waveguide devices, electrical components, etc., can solve the problems of high processing precision, assembly and cavity frequency adjustment difficulties, and achieve easy cavity frequency adjustment and microwave filling The effect of large factor and easy processing

Inactive Publication Date: 2007-07-18
WUHAN INST OF PHYSICS & MATHEMATICS CHINESE ACADEMY OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The disadvantage is that the processing accuracy is high, and the assembly and cavity frequency adjustment are difficult

Method used

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  • Rubidium atomic frequency standard microwave cavity resonator
  • Rubidium atomic frequency standard microwave cavity resonator

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0012] According to Figure 1, Figure 2, and Figure 3, it can be known that the microwave resonant cavity used for rubidium atomic frequency standard consists of a resonant ring (1), a support tube (2), a cylindrical cavity (3), a dielectric ring (4), and a rubidium filter bulb (5), rubidium absorption bubble (6), end cap (7), coupling ring (8), photocell (9), heating tube holder (10), heating triode (11), C field coil (12), screw ( 13a-h) Composition. The screws (13a-d) are used to connect the end cover (7) and the cylindrical cavity (3), and the screws (13e-h) are used to connect the heating tube base (10), the support tube (2) and the cylindrical cavity (3) , screws (13c-d) and screws (13f-h) are not shown.

[0013] It is characterized in that: the rubidium filter bubble (5) and the rubidium absorption bubble (6) are closely fitted and inserted into the support tube (2), each of which is filled with an appropriate amount of isotope rubidium and a buffer gas of a certain com...

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PUM

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Abstract

This invention discloses a rubidium atomic frequency standard microwave resonant cavity, which is composed of the resonant ring, support tube, cylindrical cavity, rubidium absorption foam, rubidium filter foam, heating pipe, heating pipe block, C coil, and etc. The rubidium absorption and filter foam insert into the support tube, the media ring inserts into the position between the support tube and cylindrical cavity, the resonant ring inserts into the position between the media ring and rubidium absorption foam, the cylindrical cavity sets out of the media ring linking the support tube by screws, the heating triode sets in the heating tube block, and the block links the support tube and cylindrical cavity through screws.

Description

technical field [0001] The invention relates to the field of a rubidium atomic frequency standard microwave resonant cavity, and more specifically relates to a rubidium atomic frequency standard microwave resonant cavity, which can be directly used in the rubidium atomic frequency standard. Background technique [0002] With the development of modern technology, more stable and precise time-frequency signals are required in many fields, and traditional mechanical timing and crystal oscillator timing can no longer meet the needs. The atomic frequency standard has extremely high stability and accuracy, so it has been used more and more widely. Among them, the rubidium atomic frequency standard is small in size, light in weight and good in performance, so it occupies a large market share. [0003] The rubidium atomic frequency standard consists of a physical part and a circuit part. The physical part determines the main performance of the rubidium atomic frequency standard. ...

Claims

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Application Information

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IPC IPC(8): H01P7/00
Inventor 谢勇辉梅刚华
Owner WUHAN INST OF PHYSICS & MATHEMATICS CHINESE ACADEMY OF SCI
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