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首页> 外文期刊>EPJ Web of Conferences >The Generalized Centroid Difference method for lifetime measurements via γ-γ coincidences using large fast-timing arrays
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The Generalized Centroid Difference method for lifetime measurements via γ-γ coincidences using large fast-timing arrays

机译:使用大型快速定时阵列通过γ-γ重合进行寿命测量的广义质心差方法

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摘要

A novel method for direct electronic “fast-timing” lifetime measurements of nuclear excited states via γ-γ coincidences using an array equipped with N very fast high-resolution LaBr3(Ce) scintillator detectors is presented. The generalized centroid difference method provides two independent “start” and “stop” time spectra obtained without any correction by a superposition of the N(N – 1)/2 calibrated γ-γ time difference spectra of the N detector fast-timing system. The two fast-timing array time spectra correspond to a forward and reverse gating of a specific γ-γ cascade and the centroid difference as the time shift between the centroids of the two time spectra provides a picosecond-sensitive mirror-symmetric observable of the set-up. The energydependent mean prompt response difference between the start and stop events is calibrated and used as a single correction for lifetime determination. These combined fast-timing array mean γ-γ zero-time responses can be determined for 40 keV γ 152Eu γ-ray source. The new method is described with examples of (n,γ) and (n,f,γ) experiments performed at the intense cold-neutron beam facility PF1B of the Institut Laue-Langevin in Grenoble, France, using 16 LaBr3(Ce) detectors within the EXILL&FATIMA campaign in 2013. The results are discussed with respect to possible systematic errors induced by background contributions.
机译:提出了一种新颖的方法,该方法使用装备有N个非常快的高分辨率LaBr3(Ce)闪烁体探测器的阵列,通过γ-γ巧合直接进行核激发态的电子“快速正时”寿命测量。广义质心差方法提供了两个独立的“开始”和“停止”时间谱,无需进行任何校正即可通过将N个检测器快速定时系统的N(N – 1)/ 2个校准的γ-γ时间差谱叠加而获得。两个快速定时阵列时间谱对应于特定γ-γ级联的正向和反向门控,并且由于两个时间谱的质心之间的时间偏移提供了皮秒敏感的镜像对称可观测集合,因此质心差-向上。校准了开始事件和停止事件之间依赖于能量的平均快速响应差异,并将其用作确定寿命的单个校正。对于40 keVγ152Euγ射线源,可以确定这些组合的快速定时阵列平均γ-γ零时响应。使用在16个LaBr3(Ce)探测器在法国格勒诺布尔的Laue-Langevin研究所的强冷中子束设施PF1B上进行的(n,γ)和(n,f,γ)实验示例说明了该新方法在2013年的EXILL&FATIMA活动中。讨论了有关背景贡献可能引起的系统错误的结果。

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