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Results of a combined monolithic crystal and an array of ASICs controlled SiPMs

机译:组合单片晶体和ASIC控制的SiPM阵列的结果

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摘要

In this work we present the energy and spatial resolutions we have obtained for a γ-ray detector based on a monolithic LYSO crystal coupled to an array of 256 SiPMs. Two crystal configurations of the same trapezoidal shape have been tried. In one approach all surfaces were black painted but the exit one facing the photosensor array which was polished. The other approach included a retroreflector (RR) layer coupled to the entrance face of the crystal powering the amount of transmitted light to the photosensors. Two coupling media between the scintillator and the SiPM array were used, namely direct coupling by means of optical grease and coupling through an array of light guides. Since the same operational voltage was supplied to the entire array, it was needed to equalize their gains before feeding their signals to the Data Acquisition system. Such a job was performed by means of 4 scalable Application Specific Circuits (ASICs). An energy resolution of about 24.4% has been achieved for the direct coupling with the RR layer together with a spatial resolution of approximately 2.9 mm at the detector center. With the light guides coupling the effects of image compression at the edges are significantly minimized, but worsening the energy resolution to about 33.1% with a spatial resolution nearing 4 mm at the detector center.
机译:在这项工作中,我们介绍了基于与256 SiPM阵列耦合的单片LYSO晶体的γ射线探测器获得的能量和空间分辨率。已经尝试了两个具有相同梯形形状的晶体结构。一种方法是将所有表面涂成黑色,但出口面对抛光的光电传感器阵列。另一种方法包括耦合到晶体入射面的后向反射(RR)层,为向光电传感器传输的一定量的光供电。在闪烁体和SiPM阵列之间使用了两种耦合介质,即通过光学油脂的直接耦合和通过光导阵列的耦合。由于向整个阵列提供了相同的工作电压,因此需要在将其信号馈送到数据采集系统之前均衡其增益。这样的工作是通过4个可扩展的专用电路(ASIC)来完成的。与RR层直接耦合的能量分辨率约为24.4%,探测器中心的空间分辨率约为2.9 mm。通过光导的耦合,边缘处图像压缩的影响显着最小化,但在探测器中心的空间分辨率接近4 mm时,能量分辨率恶化到约33.1%。

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  • 作者单位

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

    Institute for Instrumentation in Molecular Imaging (I3M). Centra Mixto UPV - CSIC - CIEMAT. Camino deVera s, 46022, Valencia, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Monolithic crystals; SiPMs; ASIC;

    机译:单片晶体;SiPM;专用集成电路;

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