High-temperature high-voltage miniature laser deuterium-deuterium atomic fusion neutron pipe
A high-temperature, high-pressure, neutron tube technology, applied in neutron sources, DC voltage accelerators, etc., can solve the problems of low output, short service life, and low sub-yield, and achieve high output, small size, and long service life. long effect
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Embodiment 1
[0013] exist figure 1 Among them, the high-temperature and high-pressure small laser deuterium-deuterium fusion neutron tube of this embodiment is composed of a tube body 1, a glass window 2, a cathode 3, an anode 4, an insulating layer 5, a cathode pin 6, and an anode pin 7.
[0014] The pipe body 1 is a glass pipe body 1 or a ceramic pipe body 1. The outer diameter of the pipe body 1 is 50mm. When the inner wall of the pipe body 1 is sintered, a layer of insulating layer 5 is sintered, and the top of the pipe body 1 is sintered and fixed with a glass window 2. , the laser emitted by the laser source can be injected into the catheter body 1 from the glass window 2, and the cathode pin 6 and the anode pin 7 connected with the tube body 1 are sintered and fixed outside the lower end of the tube body 1. A cathode 3 is sintered and fixed in the tube body 1 at the same center line as the tube body 1. The cathode 3 is connected with the cathode pin 6 as a whole. The cathode 3 is a ...
Embodiment 2
[0019] In the present embodiment, the outer diameter of cathode 3 is 40 mm, the inner diameter is 32 mm, and the height is 110 mm. The bottom center of cathode 3 is processed with a central hole with a diameter of 22 mm. The anode 4 is a rod-shaped structure. The outer diameter of anode 4 is 8 mm, The height is 100mm. After the inside of the tube body 1 is evacuated to a vacuum, it is filled with pure deuterium gas, and the pressure of the deuterium gas is 535Pa. Other components and the coupling relationship of the components are the same as in Embodiment 1.
[0020] The principle of neutron generation in the high-temperature, high-pressure small laser deuterium-deuterium fusion neutron tube in this embodiment is the same as that in Embodiment 1.
Embodiment 3
[0022] In the present embodiment, the outer diameter of the negative electrode 3 is 40mm, the inner diameter is 34mm, and the height is 150mm. The bottom center of the negative electrode 3 is processed with a central hole with a diameter of 23mm. The anode 4 is a rod-shaped structure. The outer diameter of the anode 4 is 15mm. The height is 120mm. After the inside of the tube body 1 is evacuated to a vacuum, it is filled with pure deuterium gas, and the pressure of the deuterium gas is 550Pa. Other components and the coupling relationship of the components are the same as in Embodiment 1.
[0023] The principle of neutron generation in the high-temperature, high-pressure small laser deuterium-deuterium fusion neutron tube in this embodiment is the same as that in Embodiment 1.
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Abstract
Description
Claims
Application Information
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