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Manufacturing method of muon hydrogen atom type high-frequency laser

A production method and technology of hydrogen atoms, applied in the field of lasers, can solve the problems of insufficient energy required by lasers, unportable lasers, application limitations, etc.

Inactive Publication Date: 2016-12-07
NAT UNIV OF DEFENSE TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] The purpose of the present invention is to provide a method for manufacturing a muon hydrogen atom type high-frequency laser, aiming at solving the problem that the energy required for the laser cannot be satisfied in the manufacture of lasers in the X-ray band, and its application is limited, and the current lasers in the X-ray band are not sufficient. The problem with portable technology

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  • Manufacturing method of muon hydrogen atom type high-frequency laser
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  • Manufacturing method of muon hydrogen atom type high-frequency laser

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Embodiment Construction

[0024] In order to make the object, technical solution and advantages of the present invention more clear, the present invention will be further described in detail below in conjunction with the examples. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention.

[0025] The application principle of the present invention will be further described below in conjunction with the accompanying drawings.

[0026] Such as figure 1 Shown:

[0027] A method for manufacturing a muon hydrogen atom-type high-frequency laser, which uses a muon hydrogen atom as a working substance, and the wavelength of the muon hydrogen atom laser can reach the X-ray band. The manufacturing method of the muon hydrogen atom-type high-frequency laser includes:

[0028] S101: Use muon beams to collide with hydrogen atoms to generate muon hydrogen atoms: According to the principle of quantum mechanics, electrons in...

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Abstract

The invention discloses a manufacturing method of a muon hydrogen atom type high-frequency laser. The manufacturing method comprises the following steps of: colliding hydrogen atoms by using a muon beams to ensure that electronic around the hydrogen atoms are ionized by the muons and captured by the hydrogen atoms so as to generate muon hydrogen atoms; obtaining an energy level structure of the muon hydrogen atoms through a Schrodinger equation for solving the muon hydrogen atoms; taking a carbon monoxide laser with a wave length of 5.8 microns as a pump laser to realize the overturning of amount of the muons on a 2p excited state; and enabling the muons located at a 2p energy level to jump to a 1s energy level (muons at the 2p energy level jumps to the 1s energy level to carry out spontaneous radiation jump), so as to generate 1.9 Kev of high-frequency X waveband laser. According to the manufacturing method disclosed by the invention, a working substance which is likely to generate X waveband lasers is disclosed through theoretical analysis, and a feasible working principle is disclosed; under the condition that the main quantum number is smaller than 30, the energy level life of the muon hydrogen atoms is much shorter than the life of the muons; and a proper energy level structure is searched in the part with an energy level smaller than 30, so that X waveband light is generated.

Description

technical field [0001] The invention belongs to the technical field of lasers, in particular to a method for manufacturing a muon hydrogen atom type high-frequency laser. Background technique [0002] The manufacture of lasers is a major event in the development of modern science and technology. The manufacture of lasers needs to meet three conditions: 1. Have a suitable working substance; 2. Use pumping to achieve the particle population inversion of the working substance; 3. Optical resonant cavity. Among them, finding suitable working substances is the key to making lasers. [0003] Existing lasers include gas lasers, solid-state lasers and dye lasers from the perspective of working materials, and their working ranges are basically in the visible light band and near ultraviolet or near infrared band. Lasers in the X-ray band are almost transparent to the scale of organic molecules, so they have a wide range of application backgrounds in the fields of medicine and biolog...

Claims

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Application Information

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IPC IPC(8): H01S4/00
CPCH01S4/00
Inventor 刘永录余秋伟
Owner NAT UNIV OF DEFENSE TECH
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