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首页> 外文期刊>Nuclear engineering and technology >Efficiency calibration of a coaxial HPGe detector-Marinelli beaker geometry using an 152Eu source prepared in epoxy matrix and its validation by efficiency transfer method
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Efficiency calibration of a coaxial HPGe detector-Marinelli beaker geometry using an 152Eu source prepared in epoxy matrix and its validation by efficiency transfer method

机译:使用环氧基质中制备的 152 Eu源对同轴HPGe检测器-Marinelli烧杯几何形状进行效率校准,并通过效率转移方法进行验证

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In this study, an in-house152Eu calibration source was produced from a custom epoxy matrix with a density of ρ?=?1.14?g?cm?3, which is chemically stable and durable form after its solidification. The homogeneity of152Eu in matrix was obtained better than 98%. For a Marinelli beaker geometry, an efficiency calibration procedure was applied to a n-type, coaxial, 78.5% relative efficient HPGe detector in the energy range of 121.7–1408.0?keV by using in-house152Eu calibration source. Then the measured efficiencies for Marinelli geometry were compared with the results calculated by MEFFTRAN and ANGLE softwares for the validation. Although MEFFTRAN and ANGLE have two different efficiency transfer algorithms to calculate the efficiencies, they usually need to use a reliable and accuratereference efficiencyvalues as input data.Hence,reference efficiencyvalues were obtained experimentally from a multinuclide standard source for the same detector- Marinelli geometry. In the present source characterization, the corrections required for self-absorption and true coincidence summing effects for152Eu gamma-rays were also obtained for a such close counting geometry condition. The experimental results confirmed the validity of efficiency calculations obtained by MEFFTRAN and ANGLE softwares that are calculation tools.
机译:在这项研究中,内部的152Eu校准源是由定制的环氧基质制成的,密度为ρ?=?1.14?g?cm?3,固化后化学性质稳定且持久。 152Eu在基质中的均一性优于98%。对于Marinelli烧杯几何形状,通过使用内部152Eu校准源,在能量范围为121.7–1408.0?keV的n型同轴,相对效率为78.5%的HPGe检测器上采用了效率校准程序。然后将测得的Marinelli几何效率与MEFFTRAN和ANGLE软件计算的结果进行比较以进行验证。尽管MEFFTRAN和ANGLE有两种不同的效率传递算法来计算效率,但它们通常需要使用可靠且准确的参考效率值作为输入数据。因此,参考效率值是从多核标准源通过实验获得的,用于相同探测器Marinelli几何形状。在目前的光源表征中,对于这种紧密计数的几何条件,还获得了152Eu伽马射线的自吸收和真正的巧合求和效果所需的校正。实验结果证实了作为计算工具的MEFFTRAN和ANGLE软件获得的效率计算的有效性。

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