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Impact of the Detector Definition on the Reverse Monte Carlo Calculation Results

机译:探测器定义对反向蒙特卡罗计算结果的影响

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Most of the TID, Total Ionizing Dose, calculations for electronic devices based on Reverse Monte Carlo methods consider a point as the detector. This assumption is made whereas the area sensitive to TID is a volume. However, the shape and size of this volume is difficult to estimate. A parametric study using FASTRAD? has been performed to compare TID results obtained using different detector shapes and sizes, to values computed using point detectors. Multiple geometrical models from the simplest one to the most realistic one allowed to get a large spectrum of data and perform a thorough analysis. An equivalent study was performed for external materials and its results are also shown. Recommendations on detector choice are given at the end of this paper.
机译:大多数TID,总电离剂量,基于反向蒙特卡罗方法的电子设备计算考虑到探测器的点。这种假设是制造的,而对TID敏感的区域是一个体积。然而,该体积的形状和尺寸难以估计。使用Fastrad的参数研究?已经进行了比较使用不同探测器形状和大小获得的TID结果,以使用点检测器计算的值。从最简单的多个几何模型到最逼真的模型允许获得大型数据并进行彻底的分析。对外部材料进行了等效的研究,并显示了其结果。在本文末尾给出了关于探测器选择的建议。

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