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来自对不同辐射源进行多年多辐射探测器测量的数据以及环境数据。

Data from multi year and multi radiation detector measurements of different radiation sources with environmental data.

作者信息

Goddard Braden, Hitt George W, Bridi Dorian, Isakovic Abdel F, El-Khazali Reyad, Abulail Ayman

机构信息

Department of Mechanical and Nuclear Engineering, Virginia Commonwealth University, 401 West Main Street, Richmond, VA 23284, United States.

Department of Physics and Engineering Science, Costal Carolina University, 109 Chanticleer Drive East, Conway, SC 29526, United States.

出版信息

Data Brief. 2020 Jun 7;31:105828. doi: 10.1016/j.dib.2020.105828. eCollection 2020 Aug.

DOI:10.1016/j.dib.2020.105828
PMID:32596427
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7306583/
Abstract

The data described consists of radiation measurement outputs from several different detectors located in Abu Dhabi, UAE, for the duration of 30 November 2014 through 13 December 2016. This data could be useful for anyone studying radiation count rate or spectroscopic changes over a multi year period from various radiation sources and measurement systems. The outputs of the measurement systems include 1) counts per 20 min from a Geiger-Muller detector measuring Sr, 2) counts per 20 min from a Geiger-Muller detector measuring Tl, 3) radiation spectra per 30 min from a NaI detector measuring Co, 4) radiation spectra per 30 min from a NaI detector measuring Mn, 5) radiation spectra per 30 min from a liquid scintillation detector measuring Ra, 6) counts per 30 min from a liquid scintillation detector measuring C, and room pressure, temperature, and humidity data every 10 min. A detailed description of the setup of each of these measurement systems can be found in "Experimental Setup and Commissioning Baseline Study in Search of Time-Variations in Beta-Decay Half-Lives" [1].

摘要

所描述的数据包括位于阿拉伯联合酋长国阿布扎比的几个不同探测器在2014年11月30日至2016年12月13日期间的辐射测量输出。这些数据对于任何研究多年来来自各种辐射源和测量系统的辐射计数率或光谱变化的人都可能有用。测量系统的输出包括:1) 测量锶的盖革-米勒探测器每20分钟的计数;2) 测量铊的盖革-米勒探测器每20分钟的计数;3) 测量钴的碘化钠探测器每30分钟的辐射光谱;4) 测量锰的碘化钠探测器每30分钟的辐射光谱;5) 测量镭的液体闪烁探测器每30分钟的辐射光谱;6) 测量碳的液体闪烁探测器每30分钟的计数,以及每10分钟的室压、温度和湿度数据。这些测量系统中每个系统的设置的详细描述可在《寻找β衰变半衰期的时间变化的实验设置和调试基线研究》[1]中找到。

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本文引用的文献

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An algorithm for filtering detector instabilities in search of novel non-exponential decay and in conventional half-life determinations.一种用于在寻找新型非指数衰变和传统半衰期测定中过滤探测器不稳定性的算法。
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