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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Compton-suppression and add-back techniques for the highly segmented TIGRESS HPGe clover detector array
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Compton-suppression and add-back techniques for the highly segmented TIGRESS HPGe clover detector array

机译:高度分段的TIGRESS HPGe三叶草探测器阵列的Compton抑制和回加技术

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Methods to optimize the performance of the TRIUMF-ISAC Gamma-Ray Escape-Suppressed Spectrometer (TIGRESS), an array of 12 large-volume, 32-fold segmented HPGe clover detectors to be used at the ISAC-II radioactive ion beam facility, have been developed based on GEANT4 Monte Carlo simulations. These methods rely on the segmentation of the outer electrical contacts of the TIGRESS HPGe clovers, and on the 20-fold segmentation of the Compton-suppression shields. The clover segmentation is utilized to make event-by-event decisions as to whether the γ-ray energy depositions in neighbouring crystals and clovers will be summed. The Compton suppressor segmentation is used to veto events selectively, and to reduce false suppression in experiments with high γ-ray multiplicity. Procedures to determine the optimal techniques and configurations of the array for a particular experiment, dependent on the expected γ-ray energies and multiplicities, and the velocity of the recoil ions, are presented.
机译:优化TRIUMF-ISAC伽马射线逸出抑制光谱仪(TIGRESS)的性能的方法,该仪器是由ISAC-II放射性离子束设施使用的12个大体积,32倍分段HPGe三叶草检测器阵列。是基于GEANT4蒙特卡洛模拟开发的。这些方法依赖于TIGRESS HPGe三叶草的外部电触头的分段,以及Compton抑制屏蔽的20倍分段。三叶草分割用于逐个事件地决定是否将相加在相邻晶体和三叶草中的γ射线能量沉积相加。康普顿抑制器分段用于选择性地否决事件,并在具有高γ射线多重性的实验中减少错误抑制。介绍了根据特定的γ射线能量和多重性以及反冲离子的速度确定用于特定实验的阵列的最佳技术和配置的过程。

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