基于SiPM的线阵式X射线背散射探测器设计与性能评估
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TH83

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国家重点研发计划(2016YFC0800904)资助


Design and performance evaluation of linear array Xray backscattering detector based on SiPM
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    摘要:

    为了实现现场快速安全检查过程中敏感物质的细分,探讨了一种通过X射线背散射信号求取物质密度的方法,并完成了实现该方法的核心部件——一种基于硅光电倍增管(SiPM)的的线阵式闪烁体探测器的设计和功能验证。该探测器具有能量分辨的能力,能够分析不同物质在不同能量下的散射衰减。在环境温度-10℃~50℃条件下,该探测器输出的脉冲幅值稳定,能量分辨率在221%~257%变化(室温条件时能量分辨率为236%@595 KeV)。其线阵的结构为实现散射与透视图像空间上的一一对应,进而实现散射信息与透视信息的融合打下了基础。不同材料的散射能谱测量结果表明,该探测器所探测的能量曲线能够反映物质的密度特性,验证了其用于散射能谱探测以实现物质分类的可行性,在现场查缉装备的智能识别方面极具应用前景。

    Abstract:

    In order to achieve the fine classification of different suspicious substances in onsite rapid security inspection, this paper discusses an idea to obtain the density of substances by means of Xray backscattering signal, and completes the design and functional verification of a linear scintillator detector based on silicon photomultiplier (SiPM), which is the core component to realize the proposed method. The detector has energy resolution ability and is able to analyze the scattering attenuation of different substances under different energies. The output pulse amplitude of the detector is stable under the ambient temperature of -10℃ to 50℃, and the energy resolution varies from 221% to 257% (the energy resolution is 236% @ 595 KeV at room temperature). The structure of the linear array lays a foundation for realizing spatial onetoone correspondence between scattering and perspective images, and then hopefully realizing the fusion of scattering and perspective information. The test results of scattering energy spectra of different substances show that the energy curve detected with the detector can reflect the density characteristics of the substances, which verifies the feasibility of using the detector to measure scattering energy spectrum and achieve substance classification. The detector designed in this paper has great application prospect in intelligent identification of spot investigation equipment.

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李维姣,陈嘉敏,邬小玫,王威琪,常青青.基于SiPM的线阵式X射线背散射探测器设计与性能评估[J].仪器仪表学报,2019,40(12):152-160

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  • 在线发布日期: 2022-04-19
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