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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 >Single crystal HPGe (80%) versus BGO shielded CLOVER detector for high precision decay rate measurements: a comparative study
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Single crystal HPGe (80%) versus BGO shielded CLOVER detector for high precision decay rate measurements: a comparative study

机译:单晶HPGE(80%)与BGO屏蔽三叶草探测器,用于高精度衰减速率测量:比较研究

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摘要

In this study, various detector configurations have been investigated in order to explore the optimal condition for decay rate measurements of radioactive samples using gamma spectroscopy technique. A limitation of detecting low energy gamma rays from decaying radioactive nuclei, is the Compton background which can be significantly reduced by rejecting Compton scattered events through active Bismuth germanate (BGO) shielding. On the other hand, for a CLOVER detector without BGO shielding, one can place the radioactive samples very close to the detector for enhancing geometrical efficiency. A single crystal High Purity Germanium (HPGe) detector can also be used for decay rate measurements. In order to measure the decay rate of nuclei decaying via gamma emission with reasonable intensity, optimal close geometry options have been investigated for various HPGe detector configurations.
机译:在该研究中,研究了各种检测器配置,以探讨使用伽马光谱技术进行放射性样品衰减速率测量的最佳条件。 通过衰减放射性核来检测低能量伽马射线的限制是康普顿背景,通过通过活跃的铋(BGO)屏蔽来拒绝Compton分散事件可以显着降低。 另一方面,对于没有BGO屏蔽的三叶草探测器,可以将放射性样本非常接近检测器,以提高几何效率。 单晶高纯度锗(HPGE)检测器也可用于衰减速率测量。 为了通过合理强度通过Gamma发射测量核腐烂的衰减率,已经研究了各种HPGE探测器配置的最佳关闭几何选择。

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