首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Monte Carlo efficiency transfer method for full energy peak efficiency calibration of three type HPGe detectors: A coaxial N-type, a coaxial P-type and four BEGe detectors
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Monte Carlo efficiency transfer method for full energy peak efficiency calibration of three type HPGe detectors: A coaxial N-type, a coaxial P-type and four BEGe detectors

机译:用于三种HPGe检测器的全能量峰值效率校准的Monte Carlo效率传递方法:同轴N型,同轴P型和四个BEGe检测器

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Monte Carlo efficiency transfer method was used to determine full energy peak efficiency of three type high-purity germanium (HPGe) detectors: a coaxial N-type, a coaxial P-type and four broad energy germanium detectors (BEGe). The comparisons between calculations and point source experiments showed that the relative deviations were mostly within +/- 5% for BEGe detectors in the energy range 13.9-1332 keV, within +/- 3% for the coaxial N-type detector in the energy range 17.5-662 keV, and within +/- 3% for the coaxial P-type detector in the energy range 59.5-1332 keV, respectively. An evaluation of Monte Carlo efficiency transfer method at different source-to-detector geometry configurations indicates that peak efficiency may be underestimated when point sources are placed nearer than the reference position to detector on the detector axis, and may be overestimated when point sources are placed far from the detector axis, especially for low-energy photons. Some discussions about direct Monte Carlo calculation method and Monte Carlo efficiency transfer method for full-energy peak efficiency calculation are also presented in this paper. (c) 2006 Elsevier B.V. All rights reserved.
机译:蒙特卡洛效率转移方法用于确定三种类型的高纯度锗(HPGe)检测器的全能峰值效率:同轴N型,同轴P型和四个宽能锗检测器(BEGe)。计算与点源实验之间的比较表明,能量范围为13.9-1332 keV的BEGe探测器的相对偏差大部分在+/- 5%范围内,同轴N型探测器在能量范围的相对偏差大部分在+/- 5%范围内17.5-662 keV,同轴P型探测器的能量范围分别为59.5-1332 keV +/- 3%。对不同源到检测器几何结构配置下的蒙特卡洛效率转移方法的评估表明,当点源放置在比检测器轴上检测器的参考位置更近的位置时,峰值效率可能会被低估,而当点源放置在位置上时,峰值效率可能会被高估远离探测器轴,特别是对于低能光子。本文还讨论了直接蒙特卡罗计算方法和蒙特卡洛效率转移方法用于全能峰值效率计算的问题。 (c)2006 Elsevier B.V.保留所有权利。

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