首页> 外文会议>IEEE Nuclear Science Symposium >Investigation of imaging and spectroscopy performances of a 1#x2033;#x00D7;1#x2033; LaBr3:Ce scintillator readout by Silicon Drift Detectors for nuclear physics measurements
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Investigation of imaging and spectroscopy performances of a 1#x2033;#x00D7;1#x2033; LaBr3:Ce scintillator readout by Silicon Drift Detectors for nuclear physics measurements

机译:1“×1”Labr3的成像和光谱性能的研究:CE闪烁器读出核物理测量的硅漂移探测器

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In this work we propose a gamma detector based on Silicon Drift Detectors to readout a 1″×1″ LaBr3:Ce scintillator for gamma-ray spectroscopy and imaging application. Position sensitivity could be useful in nuclear physics research to limit the worsening effect of Doppler broadening in gamma-ray spectroscopy at relativistic velocities. The main difficulty in determining the position of the gamma-ray interaction in the crystal is associated to the thickness/diameter ratio of the crystal (in our case 1∶1) and the use of reflectors on all lateral and top sides of the crystal. This last choice enhances energy resolution, but makes imaging capability more challenging because light is spread over all photodetectors. Preliminary results show that the camera is able to detect shifts in the measured signals, when a 137Cs (662 keV) source is moved with steps of 5 mm. A modified version of the centroid method is finally implemented to evaluate the imaging capability of the system.
机译:在这项工作中,我们提出了一种基于硅漂移探测器到读出一个1“×1”LaBr3伽马检测器:Ce无机伽玛射线光谱和成像应用。位置灵敏度可能是在核物理研究用于限制在相对速度多普勒展宽的伽玛射线光谱恶化的影响。在确定晶体中的伽玛射线相互作用的位置的主要困难是关联到晶体的厚度/直径比(在我们的情况下,1点01分),并且在晶体的所有横向侧和顶侧的使用反射器。这最后的选择提高能量分辨率,但使成像能力更具挑战性,因为光线是分布在所有的光电探测器。初步结果表明,该照相机能够检测移位在所测量的信号,当 137 铯(662千电子伏)源与5毫米的步骤移动。质心方法的修改版本被最后实施以评估该系统的成像能力。

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