System and method for testing neutron scintillator position sensitive detector

A sensitive detector and test system technology, applied in the field of nuclear physics detection, can solve problems such as difficult horizontal comparison, difficult to control the quality of trigger sources, low efficiency, etc., and achieve the effect of stable output, efficient, fast and meticulous measurement

Inactive Publication Date: 2017-05-31
DONGGUAN UNIV OF TECH +1
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

These methods have complex testing system and low efficiency
In addition, the relevant management regulations on radioactive sources are strict, and many experimental trigger sources still have defects such as difficult quality control, which makes it difficult to well meet the performance requirements of scintillation detection position-sensitive nuclear detectors.
For example, special-purpose experimental testing requires on-site layout, and the testing system has long-term uncertainty. Once the measurement requirements and environment change, the experiment will almost have to be re-scaled, so it is time-consuming, poor in versatility, and different experiments It is difficult to compare horizontally between environments
Furthermore, in addition to being strictly restricted by the relevant management regulations of radioactive sources, the calibration of radioactive sources often has defects such as difficult control of activity / triggering, which makes it difficult to achieve a good match with measurement requirements
The above factors make it difficult for traditional detection systems to control the production quality of scintillator detectors well

Method used

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  • System and method for testing neutron scintillator position sensitive detector
  • System and method for testing neutron scintillator position sensitive detector
  • System and method for testing neutron scintillator position sensitive detector

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Embodiment Construction

[0023] In order to describe the technical content, structural features, achieved goals and effects of the present invention in detail, the following will be described in detail in conjunction with the embodiments and accompanying drawings.

[0024] refer to figure 1 , the present invention discloses a neutron scintillator position sensitive detector testing system 200, comprising a pulse light source simulation device 31, an optical processing module 32, a mechanical scanning platform 33 and a data acquisition module 34, the pulse light source simulation device 31 outputs pulse light After the optical processing module 32 attenuates, polarizes, and expands the pulsed light signal, it passes through a fiber collimator 321 for collimation processing and fixes it on the mechanical scanning platform 33, and makes the The pulsed light signal is irradiated on the test point of the wave-shifting optical fiber of the neutron scintillator position-sensitive detector 35 to be tested, an...

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Abstract

The invention discloses a system for testing a neutron scintillator position sensitive detector. The system comprises a pulsed light source simulator, an optical processing module, a mechanical scanning platform and a data acquisition module. The pulsed light source simulator outputs pulsed light signals; the pulsed light signals are processed through the optical processing module by means of attenuation, polarization and beam expanding, collimated by an optical fiber collimator and fixed to the mechanical scanning platform; the pulsed light signals irradiate to a test point of a wavelength-shifting optical fiber of the neutron scintillator position sensitive detector to be tested, and output photons to a tested photomultiplier having multiple channels through the wavelength-shifting optical fiber, and finally the data acquisition module acquires tested signals of the tested photomultiplier. According to the system, a light source emitted from the neutron scintillator is simulated through pulsed laser, and performance parameter of the signals from the wavelength-shifting optical fiber to the different channels of the photomultiplier are acquired, thus, detection and test of nuclear detectors in non-radioactive environments are achieved.

Description

technical field [0001] The invention belongs to the field of nuclear physics detection. The invention relates to a 2D neutron scintillator position-sensitive detector testing system, in particular to using a laser beam to simulate the spot of neutrons on the scintillation screen to measure and test each channel of the scintillator position-sensitive nuclear detector without radiation. Reference information such as the source or additional other detectors to aid in the measurement position. Background technique [0002] Neutron detectors based on new scintillators and photoelectric readout structures have developed rapidly in recent years, especially doped scintillation detectors. However, neutron scintillator position-sensitive detectors mostly use photoelectric Due to objective reasons such as the production process, it is difficult to keep the performance parameters of each readout channel consistent for amplifying devices such as multiplier tubes, which makes it difficul...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01T3/06
CPCG01T3/06
Inventor 李仪滕海云孙志嘉唐斌杨雷王艳凤许虹赵晓芳陈平平
Owner DONGGUAN UNIV OF TECH
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