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Cosmogenic Activation in Double Beta Decay Experiments

机译:双β衰变实验中的宇宙原性活化

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Double beta decay is a very rare nuclear process and, therefore, experiments intended to detect it must be operated deep underground and in ultra-low background conditions. Long-lived radioisotopes produced by the previous exposure of materials to cosmic rays on the Earth’s surface or even underground can become problematic for the required sensitivity. Here, the studies developed to quantify and reduce the activation yields in detectors and materials used in the set-up of these experiments will be reviewed, considering target materials like germanium, tellurium and xenon together with other ones commonly used like copper, lead, stainless steel or argon. Calculations following very different approaches and measurements from irradiation experiments using beams or directly cosmic rays will be considered for relevant radioisotopes. The effect of cosmogenic activation in present and future double beta decay projects based on different types of detectors will be analyzed too.
机译:双β衰减是一种非常罕见的核进程,因此,旨在检测它的实验必须在地下和超低背景条件下进行操作。通过先前的材料暴露于地球表面或甚至地下的宇宙射线产生的长寿放射性同位素可能会因所需的灵敏度而产生问题。在这里,将审查为量化和降低这些实验设置中使用的探测器和材料的激活产量的研究,考虑到锗,碲和氙类似的目标材料以及常用的铜,铅,不锈钢钢或氩气。将考虑使用梁或直接宇宙射线的辐射实验的辐射实验的非常不同的方法和测量的计算。相关的放射性同位素。也将分析基于不同类型的探测器的现状和未来双β衰变项目的宇宙原性激活的影响。

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