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Optimization of electromagnetic and hadronic extensive air shower identification using the muon detectors of the TAIGA experiment

机译:使用TAIGA实验的μon检测器优化电磁和强子大风淋识别

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摘要

The TAIGA experiment in the Tunka valley near Lake Baikal is planning an extension with new TAIGA-Muon scintillation detector stations. The main purpose of TAIGA is gamma-ray astronomy in the TeV to PeV energy range and cosmic ray physics. The purpose of the Taiga-Muon detectors is to measure the muon component of air showers for improving cosmic ray composition measurements as well as gamma-hadron separation above 100 TeV. Monte Carlo simulations of the experiment are done with the software packages CORSIKA and GEANT4. Extensive air showers of primary particles in the energy range 100-3000 TeV are created with CORSIKA. The trigger efficiency is calculated and used for optimization. The suppression factor of hadronic showers versus electromagnetic showers is studied, leading to an optimum depth of soil absorber (2 m), at the lowest energy range. Data on the identification efficiency for primary gamma-quanta and proton events are presented as well as the suppression factor.
机译:在贝加尔湖附近的通卡河谷进行的TAIGA实验正计划扩展新的TAIGA-Muon闪烁探测器站。 TAIGA的主要目的是在TeV到PeV能量范围内的伽马射线天文学和宇宙射线物理学。 Taiga-Muon探测器的目的是测量空气喷淋的μon分量,以改善宇宙线成分的测量以及超过100 TeV的伽马强子分离。使用软件包CORSIKA和GEANT4完成了Monte Carlo模拟实验。使用CORSIKA可以创建能量范围为100-3000 TeV的大量初级粒子空气喷淋。计算触发效率并将其用于优化。研究了强风阵雨与电磁阵雨的抑制因子,从而在最低能量范围内获得了最佳的土壤吸收层深度(2 m)。给出了有关原始伽马量子和质子事件的识别效率的数据以及抑制因子。

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