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Scintillator performance testing device and consistency correction method thereof

A test device and scintillator technology, which is applied in the field of nuclear radiation detectors, can solve problems such as unstable scintillator performance measurement results, inability to truly reflect scintillator energy, gamma ray energy resolution, and precision limitations, and achieve measurement equipment structure The effect of complex, cumbersome measurement operation process and precise measurement method

Active Publication Date: 2017-08-01
INST OF HIGH ENERGY PHYSICS CHINESE ACAD OF SCI
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  • Application Information

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Problems solved by technology

However, the photodetection device involved in this patent will be affected by some environmental factors (such as temperature and voltage), which will cause the instability of the scintillator performance measurement results; The light is detected by multiple photodetection units, and then the signals of multiple photodetection units are summed to obtain the signal amplitude corresponding to the light output of this scintillator, and the signal with part of the all-energy peak is the gamma photon generated Kang After Puton scattering, it is formed by depositing energy in two or more different scintillators. Therefore, the energy spectrum corresponding to one scintillator is affected by the inconsistency of the gain of the photodetection unit and the health of different scintillators. Due to the influence of Puton scattering, the accuracy of the full-energy peak-to-peak position will be limited. In general, it is about ±5%, and it can only reach ±3% under the best conditions. In addition, due to the inconsistency of the gain of each optical detection unit As well as the influence of Compton scattering, the energy resolution of the full-energy peak of the measured scintillator energy spectrum is also inaccurate, and cannot truly reflect the energy resolution of this scintillator for a certain energy gamma ray, so the device disclosed in the patent CN102353976A does not Integrate the functional module of energy resolution test

Method used

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  • Scintillator performance testing device and consistency correction method thereof
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  • Scintillator performance testing device and consistency correction method thereof

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Embodiment Construction

[0029] Assuming the above-mentioned M=N=8, and assuming that the above-mentioned photodetecting device is a silicon photomultiplier tube (SiPM), the following is the specific implementation form developed by this measuring device:

[0030] The mechanical box 1 carries all the components of the scintillator performance measurement device, and plays the role of shielding from light.

[0031] The power system 2 is divided into two power modules. The first power supply module is an ultra-low ripple adjustable regulated power supply, which supplies power to the array detector and preamplifier system; the second power supply module is a low ripple switching power supply, which supplies power to the data acquisition board and temperature monitoring system. The invention adopts a low-ripple power supply module to reduce the system noise of the measuring device, and independently supplies power to the data acquisition card with large noise interference, aiming at reducing the internal ...

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Abstract

The invention discloses a scintillator performance testing device and a consistency correction method thereof. The device comprises an array detector, a temperature compensation system, a preamplifier system, a multichannel data acquisition board and a testing box for accommodating a to-be-tested scintillator, wherein the scintillator placing position in the testing box is corresponding to each light detection device in the array detector; the preamplifier system is used for carrying out amplification molding and differential output on each path of signals outputted by the array detector; the multichannel data acquisition board is used for carrying out analog-to-digital conversion on received multiple paths of differential analog signals, real-time peak searching is then carried out on each path of digital signals to complete integration of each path of digital signals; the integral data of each path of signals are finally transmitted to a computer data acquisition system; and an energy spectrum obtained by each light detection unit is subjected to temperature compensation correction, light output result correction and energy resolution correction according to a specific method. The device can independently test multiple scintillators with no mutual interference, and the measurement result precision is improved.

Description

technical field [0001] The invention belongs to the technical field of nuclear radiation detectors, and relates to a scintillator performance testing device and a consistency correction method thereof. Background technique [0002] Particles or radiation in the field of high-energy physics cannot be directly observed, and can only be indirectly detected by interacting with matter and converting them into well-known light or electrical signals. A nuclear radiation detector is a device that uses this principle to detect high-energy particles or nuclear radiation events. It has been widely used in nuclear physics experiments, nuclear safety, nuclear medicine, geological detection and industrial flaw detection. As one of the most widely used nuclear radiation detectors, scintillator detectors are generally composed of scintillators, photodetection devices and electronics; it utilizes the principle that scintillators interact with radiation particles to generate fluorescence, and...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01T7/00
CPCG01T7/005
Inventor 杨明洁王英杰章志明李道武周魏唐浩辉朱美玲魏龙
Owner INST OF HIGH ENERGY PHYSICS CHINESE ACAD OF SCI
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