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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Accurate efficiency characterization of a BEGe detector in the low-energy range using empirical and Monte Carlo simulation approaches
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Accurate efficiency characterization of a BEGe detector in the low-energy range using empirical and Monte Carlo simulation approaches

机译:使用经验和蒙特卡罗模拟方法,在低能量范围内精确效率表征Bege探测器

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摘要

The efficiencies of a broad energy germanium detector were characterized down to energies below 10 keV. The K shell X-ray absorption in germanium was seen as a sharp drop in efficiency around 11 keV. This feature was used to determine the thickness of this detector's dead layer. By comparing efficiency simulations with different dead layer thicknesses to those determined from empirical measurements, the best fit dead layer thickness was determined to be 5.7 +/- 1.5 mu m. Additional measurements, taken with a collimator, made analytical calculations of the efficiency possible and these results also supported the dead layer thickness determination.
机译:广泛的能量锗探测器的效率被表征为低于10 keV的能量。 锗中的K壳X射线吸收被视为效率急剧下降约11keV。 此功能用于确定该探测器死层的厚度。 通过将不同死层厚度的效率模拟与经验测量确定的效率模拟,确定最佳拟合死层厚度为5.7 +/-1.5μm。 用准直器拍摄的额外测量,使得可能的效率进行分析计算,这些结果也支持死层厚度测定。

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