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Full-energy peak efficiency calibration of a HPGe detector using radioactive sphere source

机译:使用放射性球体源对HPGe检测器进行全能峰值效率校准

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Direct mathematical expressions to calculate the absolute photopeak efficiency for the NIST HPGe detector in case of a gas sphere sources filled with noble gases (85)~Kr and (133)~Xe have been derived. In addition, the attenuation of the photons by the source container, the window and the end cap materials is also presented in a simple straightforward mathematical expression. The photopeak efficiency values as a function of the photon energies are shown in Figure 2. As seen from Figure 2, increasing the window material atomic number is nearly insignificant in the energy range higher than 110 keV which is the inversion point of the efficiency-energy curve, whereas, it decreases the efficiency values slightly in the range less than the inversion point.
机译:推导了在气态球源充满稀有气体(85)〜Kr和(133)〜Xe的情况下,NIST HPGe检测器的绝对光峰效率的直接数学表达式。此外,源容器,窗口和端盖材料对光子的衰减也以简单直接的数学表达式表示。光电峰值效率值随光子能量的变化如图2所示。从图2可以看出,在高于110 keV的能量范围内,增加窗口材料的原子序数几乎是微不足道的,这是效率能量的反转点。曲线,但是,它在小于反转点的范围内稍微降低了效率值。

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