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Background reduction in neutrinoless double beta decay experiments using segmented detectors-A Monte Carlo study for the GERDA setup

机译:使用分段检测器的中微子双β衰变实验的背景减少-用于GERDA设置的Monte Carlo研究

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摘要

The identification of gamma radiation is essential for a new generation of double beta decay experiments. The GERmanium Detector Array, GERDA, located at the INFN Gran Sasso National Laboratory (LNGS) in Italy, uses germanium, enriched in ~(76)Ge, as source and detector, and aims at a background level of less than 10~(-3)counts/(kg keVy) in the region of the Q_(ββ)-value. For the first time highly segmented detectors will be installed in a double beta decay experiment. A detailed GEANT4 Monte Carlo study was performed to evaluate the background reduction achievable by anti-coincidence cuts between crystals and segments.rnWithin the overall geometry of GERDA, the segmentation scheme considered here provides around an order of magnitude of extra background reduction.
机译:伽玛射线的识别对于新一代双倍β衰变实验至关重要。位于意大利INFN格兰萨索国家实验室(LNGS)的锗探测器阵列GERDA使用富含〜(76)Ge的锗作为源和探测器,其背景水平低于10〜(- 3)在Q_(ββ)值区域内的数量/(kg keVy)。首次将高分段检测器安装在双beta衰减实验中。进行了详细的GEANT4蒙特卡洛研究,以评估通过晶体和片段之间的反符合切割实现的背景减少。在GERDA的整体几何结构中,此处考虑的分割方案可提供大约一个数量级的额外背景减少。

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