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首页> 外文期刊>Nuclear engineering and technology >Replacement of a photomultiplier tube in a 2-inch thallium-doped sodium iodide gamma spectrometer with silicon photomultipliers and a light guide
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Replacement of a photomultiplier tube in a 2-inch thallium-doped sodium iodide gamma spectrometer with silicon photomultipliers and a light guide

机译:用硅光电倍增管和光导代替2英寸掺th碘化钠伽马能谱仪中的光电倍增管

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The thallium-doped sodium iodide [NaI(Tl)] scintillation detector is preferred as a gamma spectrometer in many fields because of its general advantages. A silicon photomultiplier (SiPM) has recently been developed and its application area has been expanded as an alternative to photomultiplier tubes (PMTs). It has merits such as a low operating voltage, compact size, cheap production cost, and magnetic resonance compatibility. In this study, an array of SiPMs is used to develop an NaI(Tl) gamma spectrometer. To maintain detection efficiency, a commercial NaI(Tl) 2′?×?2′ scintillator is used, and a light guide is used for the transport and collection of generated photons from the scintillator to the SiPMs without loss. The test light guides were fabricated with polymethyl methacrylate and reflective materials. The gamma spectrometer systems were set up and included light guides. Through a series of measurements, the characteristics of the light guides and the proposed gamma spectrometer were evaluated. Simulation of the light collection was accomplished using the DETECT 97 code (A. Levin, E. Hoskinson, and C. Moison, University of Michigan, USA) to analyze the measurement results. The system, which included SiPMs and the light guide, achieved 14.11% full width at half maximum energy resolution at 662?keV.
机译:many掺杂的碘化钠[NaI(Tl)]闪烁检测器由于其一般优势而在许多领域中被首选作为伽马能谱仪。硅光电倍增管(SiPM)近期已经开发出来,其应用领域已经扩大,可以替代光电倍增管(PMT)。它具有工作电压低,尺寸紧凑,生产成本低以及磁共振兼容性等优点。在这项研究中,一系列SiPM用于开发NaI(Tl)伽马能谱仪。为了维持检测效率,使用了商品化的NaI(Tl)2'π×β2'闪烁体,并且使用了光导来将产生的光子从闪烁体向SiPM进行传输和收集而不会造成损失。测试导光板由聚甲基丙烯酸甲酯和反射材料制成。设置了伽马能谱仪系统,其中包括光导。通过一系列测量,评估了光导和建议的伽马能谱仪的特性。使用DETECT 97代码(美国密歇根大学的A. Levin,E。Hoskinson和C. Moison)完成光收集的模拟,以分析测量结果。该系统包括SiPM和光导,在662?keV的最大能量分辨率的一半时,实现了14.11%的全宽。

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