首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Study of accuracy in the position determination with SALSA, a γ-scanning system for the characterization of segmented HPGe detectors
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Study of accuracy in the position determination with SALSA, a γ-scanning system for the characterization of segmented HPGe detectors

机译:研究用于表征分段HPGe探测器的γ扫描系统SALSA确定位置的准确性

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摘要

Accurate characterization of the electric response of segmented high-purity germanium (HPGe) detectors as a function of the interaction position is one of the current goals of the Nuclear Physics community seeking to perform γ-ray tracking or even imaging with these detectors. For this purpose, scanning devices must be developed to achieve the signal-position association with the highest precision. With a view to studying the accuracy achieved with SALSA, the SAlamanca Lyso-based Scanning Array, here we report a detailed study on the uncertainty sources and their effect in the position determination inside the HPGe detector to be scanned. The optimization performed on the design of SALSA, aimed at minimizing the effect of the uncertainty sources, afforded an intrinsic uncertainty of ~2 mm for large coaxial detectors and ~1 mm for planar ones.
机译:分段高纯锗(HPGe)检测器的电响应作为相互作用位置的函数的准确表征是寻求使用这些检测器进行γ射线跟踪甚至成像的核物理学界的当前目标之一。为此,必须开发扫描设备以实现最高精度的信号位置关联。为了研究使用基于SAlamanca Lyso的扫描阵列SALSA所获得的精度,在这里我们报告了有关不确定性源及其在要扫描的HPGe检测器内部位置确定中的影响的详细研究。针对SALSA的设计进行了优化,旨在最大程度地减少不确定性源的影响,对于大型同轴探测器,固有不确定性约为〜2 mm,对于平面同轴探测器,固有不确定性为〜1 mm。

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