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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Geometrical optimisation of a segmented HPGe detector for spectroscopic gamma emission tomography-A simulation study
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Geometrical optimisation of a segmented HPGe detector for spectroscopic gamma emission tomography-A simulation study

机译:分段HPGE检测器的几何优化,用于光谱伽马发射断层扫描 - 一种模拟研究

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摘要

Segmented coaxial HPGe (High Purity Germanium) detectors have recently been shown to be feasible for Gamma Emission Tomography (GET). This type of detector allows for a combination of high efficiency and high energy resolution in gamma spectrometry of irradiated nuclear fuel. The ultimate aim of developing segmented HPGe for GET measurements is to achieve a high spatial resolution to facilitate imaging of rod-internal features and interrogation of smaller irradiated fuel samples. In this work, we present the optimisation of a segmented HPGe detector through a simulation study using the Monte Carlo particle transport code MCNP. Constraints to each dimension of the detector were identified, from manufacturing limitations and requirements arising from the use of a finite-sized collimator slit. In particular, a relationship between the minimum inner radius of the coaxial detector and the segments azimuthal dimension was derived based on the identified constraints. Segment azimuthal and radial dimensions have been varied (based on the derived relationship between the azimuthal and radial dimension) and the full energy efficiency and misidentification rate were evaluated to obtain the optimal dimensions. The optimal ranges of the segment dimensions were determined.
机译:最近已被证明伽马排放断层扫描(GET)最近被证明是可行的分段的同轴覆盖物探测器。这种类型的检测器允许在辐照核燃料的伽马光谱法中进行高效率和高能量分辨率的组合。开发分段HPGE进行测量的最终目标是实现高空间分辨率,以便于杆内部特征的成像和较小的照射燃料样品的询问。在这项工作中,我们通过使用Monte Carlo粒子传输代码MCNP来展示通过模拟研究进行分段的HPGE探测器。识别出对检测器的每个尺寸的约束,从使用有限尺寸的准直器狭缝产生的制造限制和要求。特别地,基于所识别的约束导出同轴检测器的最小内半径和段方位角尺寸之间的关系。已经改变了区段方位角和径向尺寸(基于方位角和径向尺寸之间的导出关系),评估全能效率和错误识别率以获得最佳尺寸。确定段尺寸的最佳范围。

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