在GERDA液体中测量85Kr特异活性
M Agostini1, A Alexander1, G Araujo2
1Department of Physics and Astronomy, University College London, London, UK.
概括
来自核活动的放射性同位素克里普顿-85 (Kr-85) 对敏感探测器构成了背景挑战. 格尔达实验精确测量了液体中的Kr-85水平,这对于无中子双β衰变的搜索至关重要.
科学领域:
- 核物理学 核物理 核物理
- 粒子物理学的粒子物理学.
- 探测器技术 探测器技术
背景情况:
- 放射性同位素Kr-85由于核工业活动而在大气中普遍存在.
- 对于低值的贵重气体和液体探测器,Kr-85β衰变具有显著的背景干扰.
- 高贵气体探测器通常使用来自空气的介质,使它们易受Kr-85污染的影响.
研究的目的:
- 为了确定格尔达实验中使用的液态中Kr-85的特异活性.
- 量化Kr-85对高灵敏度搜索的背景贡献.
- 为了验证探测器介质在最小化Kr-85污染方面的有效性.
主要方法:
- 来自Gerda实验第二阶段的完整数据集的分析.
- 利用Gerda高纯度探测器的高分辨率马射线光谱学能力.
- 在液体中量化Kr-85的特定活性.
主要成果:
- 在液态中,Kr-85的特异活性被确定为1.89 mBq/kg.
- 这种测量是通过对Gerda实验数据的全面分析来实现的.
- 探测器的卓越的玛射线光谱性能是这一精确确定的关键.
结论:
- 测量到的Kr-85活动为敏感实验中的背景建模提供了必要的数据.
- 了解和量化Kr-85水平对于未来的低背景实验至关重要,特别是那些寻找无中子双β衰变的实验.
- 格尔达实验的功能允许精确确定这一重要的背景源.
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