Method for detecting distribution of deuterium particle beams

A particle beam and detector technology, which is used in the field of detecting deuterium particle beam current distribution by using CR-39 solid nuclear track detector, can solve the problem of low beam intensity, performance change of CR-39 solid nuclear track detector, and future problems. See the beam distribution of strong current deuterium particles, etc., to avoid the interference of impurity particles and overcome the effect of thermal effects

Inactive Publication Date: 2012-07-25
INST OF ELECTRONICS ENG CHINA ACAD OF ENG PHYSICS
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Problems solved by technology

[0003] It is publicly reported that the main feature of the CR-39 solid nuclear track detector to detect the particle beam distribution is to detect the beam distribution of a large accelerator and the beam intensity is small (microampere level or lower), which has not been used.

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  • Method for detecting distribution of deuterium particle beams

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Embodiment Construction

[0014] The present invention will be further described below in conjunction with specific embodiments.

[0015] The specific steps of using CR-39 solid nuclear track detector to detect deuterium particle beam distribution are as follows:

[0016] 1) Sampling inspection of CR-39 solid nuclear track detector

[0017] Take one CR-39 solid nuclear track detector from the same batch, keep it in a NaOH solution with a temperature of 70°C and a molar concentration of 5.5 mol / L for 15 hours, and then take it out. Use a digital microscope to measure at 100 times magnification. CR-39 solid nuclear track detector is used for observation. If there is no track, it means that the batch of CR-39 solid nuclear track detector is suitable for selection. Otherwise, if the CR-39 solid nuclear track detector is not well preserved Or exposed to the atmosphere, the a particles in the cosmic rays will cause damage to it, forming a heavy background, which is not suitable for selection;

[0018] 2) Processing...

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Abstract

The invention provides a method for detecting the distribution of deuterium particle beams. The method is characterized by comprising the following steps: (1) arranging a CR-39 solid state nuclear track detector on the rear surface of a deuterium target or a tritium target of an accelerator based neutron source; (2) recording a number of tracks on the surface of the CR-39 solid state nuclear track detector after the accelerator based neutron source is irradiated by a microscope; and (3) by a mapping relation between a deuterium particle number N on the surface of the deuterium target or the tritium target and the number X of the tracks on the surface of the CR-39 solid state nuclear track detector, inverting the distribution of the deuterium particle beams by the number X of the tracks. According to the method, the measurement on the distribution of the deuterium particle beams can be implemented and the interference of impurity particles is effectively avoided; the distribution of high-current deuterium particle beams in an order range of milliampere to ampere can be measured; and the thermal effect generated by energy deposition in the direct action process of the high-current particle beams and the CR-39 solid state nuclear track detector is effectively overcome.

Description

Technical field [0001] The invention belongs to the field of accelerator physics and neutron physics, and specifically relates to a method for detecting the beam distribution of deuterium particles by using a CR-39 solid nuclear track detector. Background technique [0002] CR-39 solid nuclear track detector is an integral detector. When charged particles enter the solid nuclear track material, they will cause radiation damage around the trajectory along its range, forming a latent track. The damage radius is generally only nanometers. When this kind of latent track is chemically etched under certain conditions, the damaged area is more easily corroded than the undamaged area, so that the latent track in the detector material is enlarged, so as to reach the micron observable by ordinary light microscope. Level degree in order to record the number and distribution of particles. The CR-39 solid nuclear track detector is the most sensitive solid nuclear track detector that has been...

Claims

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Application Information

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IPC IPC(8): G01T3/00
Inventor 王博宇张国亮谈效华
Owner INST OF ELECTRONICS ENG CHINA ACAD OF ENG PHYSICS
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