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Position and energy resolution of a new gamma-ray detector based on a single CsI(Tl) scintillator coupled to a silicon drift chamber array

机译:基于耦合到硅漂移室阵列的单个CsI(Tl)闪烁体的新型伽马射线探测器的位置和能量分辨率

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We have developed a first prototype of gamma-ray detector for imaging and spectroscopy which is based on a single CsI(Tl) scintillator coupled to a linear array of silicon drift chambers (SDCs). The detector performs the measurement of the position of interaction in one coordinate, by the centroid method, and the measurement of the /spl gamma/ photon energy, by summing the signals of all the single units. The small size and the compactness of the CsI(Tl)-SDC assembly make this detector scheme an interesting solution for the realization of small scintillation cameras for nuclear medicine. Moreover, the low electronics noise offered by the SDC allows to reach good performances in both position and energy resolution. The first experimental results obtained on the prototype are reported in this work. A position resolution better than 1 mm FWHM and an energy resolution of about 16% FWHM at 122 keV have been measured. A comparison of the experimental results with the results of Monte Carlo simulations is also reported.
机译:我们已经开发了用于成像和光谱学的伽马射线探测器的第一个原型,该原型基于与硅漂移室(SDC)线性阵列耦合的单个CsI(Tl)闪烁体。检测器通过对所有单个单元的信号求和,通过质心法测量一个坐标中的相互作用位置,并测量/ splγ/光子能量。 CsI(Tl)-SDC组件的小尺寸和紧凑性使得该探测器方案成为实现用于核医学的小型闪烁摄像机的有趣解决方案。此外,SDC提供的低电子噪声允许在位置和能量分辨率方面达到良好的性能。在这项工作中报告了在原型上获得的第一个实验结果。已测得的位置分辨率优于1 mm FWHM,在122 keV时的能量分辨率约为16%FWHM。还报告了实验结果与蒙特卡洛模拟结果的比较。

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