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Position sensitivity of segmented planar HPGe detectors for the DESPEC project at FAIR

机译:公平的DESPEC项目的分段式平面HPGe探测器的位置灵敏度

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One of the proposed germanium detector systems for the upcoming DESPEC array at the FAIR facility consists of triple modules of electrically segmented planar high-purity germanium detectors. In this work, the position sensitivity obtained by means of pulse shape analysis (PSA) for simulated γ-ray interactions has been studied for the possible segmentation patterns for such detectors-the double-sided strip detector (DSSD) and the one-sided pixelated geometry. An over-all similar number of readout channels has been considered for each case, resulting in 8 + 8 strips and 16 pixels. It has been found that the higher physical granularity of the DSSD results in a significantly higher position resolution, as well as in a somewhat lower probability of merging multiple interaction points. A drawback of the DSSD geometry is the inability to assign the interactions to the correct voxels for certain complex multiple interaction patterns. This effect has been studied in detail. Finally, a comparison has been made with the existing 25-pixel planar detector at KTH [A. Khaplanov, et al., Nucl. Instr. and Meth. A 580 (2007) 1075; L. Milechina, B. Cederwall, Nucl. Instr. and Meth. A 550 (2005) 278)].
机译:FAIR设施中即将推出的DESPEC阵列所建议的锗探测器系统之一,包括三部分电分段的平面高纯度锗探测器。在这项工作中,研究了通过脉冲形状分析(PSA)获得的用于模拟γ射线相互作用的位置灵敏度,从而确定了这种检测器的可能的分割模式-双面带状检测器(DSSD)和单侧像素化几何。每种情况下都考虑了总体上相似数量的读出通道,从而产生8 + 8条带和16个像素。已经发现,DSSD的较高物理粒度导致显着较高的位置分辨率,以及合并多个交互点的可能性较低。 DSSD几何图形的一个缺点是无法为某些复杂的多重交互模式将交互分配给正确的体素。已经对该效果进行了详细研究。最后,我们将其与KTH [A.的现有25像素平面检测器进行了比较。 Khaplanov等,Nucl。仪器和方法。 A 580(2007)1075; L. Milechina,B.Cederwall,Nucl。仪器和方法。 A 550(2005)278)]。

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