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tudy of ~(400K-induced rates for a KM3NeT design option with multi-PMT optical modules

机译:多PMT光学模块的KM3NeT设计方案的〜(400K感应率研究)

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摘要

Radioactive decays of Potassium-40 (~(40)K) are a major source of photomultiplier signals in deep-sea neutrino telescope. Understanding the response of optical modules to this background is necessary for the efficient reconstruction of muon and neutrino events. On the other hand, high ~(40)K-induced rates offer a possibility to calibrate a photomultipliers' efficiency, signal amplitude and timing characteristics. Using a Geant4-based Monte Carlo simulation, ~(40)K-induced rates and PMT calibration methods were studied for a KM3NeT neutrino telescope design option with multi-PMT optical modules. The results of this study will be presented.
机译:钾40(〜(40)K)的放射性衰变是深海中微子望远镜中光电倍增管信号的主要来源。为了有效地重建介子和中微子事件,必须了解光学模块对这种背景的响应。另一方面,〜(40)K诱导的高速率为校准光电倍增管的效率,信号幅度和时序特性提供了可能性。使用基于Geant4的蒙特卡罗模拟,研究了具有多PMT光学模块的KM3NeT中微子望远镜设计选项的〜(40)K诱导速率和PMT校准方法。将介绍这项研究的结果。

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