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Correlation Technique for High Sensitivity Detection of ~(239)Pu

机译:〜(239)Pu高灵敏度检测的相关技术

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The Correlated Variation Method is a technique to improve detection sensitivity by examining the arriving count distribution. Counts coming from background are uncorrelated in time, and across detectors in multi-detector systems; counts arriving from signals correlate across detectors and during the time the source passes through the field of view. This method has demonstrated sub-Currie limit detection. In addition to these correlations, gamma sources with multiple energy peaks also show counts correlated in energy. At least conceptually background fluctuations at one energy should not influence background fluctuations at other energies; adding this additional correlation in the source detection algorithm should enable greater detection sensitivity while lowering the statistical false alarm rate. This addition to the Correlated Variation technique is being used to see if the method's effectiveness in detecting isotopes with multiple peaks, such as ~(60)Co and ~(239)Pu, can be increased. In this paper the results of the effort is shown, with predictions for system sensitivity to ~(239)Pu shown.
机译:相关变化法是一种通过检查到达计数分布来提高检测灵敏度的技术。来自背景的计数在时间上以及在多探测器系统中的各个探测器之间是不相关的。来自信号的计数在探测器之间以及在源穿过视场的过程中相互关联。此方法已证明了亚居里极限检测。除了这些相关性之外,具有多个能量峰的伽玛射线源也显示出与能量相关的计数。至少从概念上讲,一种能量的本底波动不应影响其他能量的本底波动。在源检测算法中添加此额外的相关性应该可以提高检测灵敏度,同时降低统计误报率。正在使用“相关变化技术”的这一附加功能来查看是否可以提高该方法在检测具有多个峰(例如〜(60)Co和〜(239)Pu)的同位素时的有效性。本文显示了工作的结果,并显示了系统对〜(239)Pu的敏感性的预测。

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