九次风淋室实验的μ子测量值综合分析的最新进展

D. Soldin
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引用次数: 20

摘要

在过去的二十年里,各种各样的实验已经测量了广泛的空气阵雨中的μ子密度,其主要能量超过了几个数量级。虽然一些实验观察到模拟和实验测量的空气阵雨之间的μ子密度存在差异,但其他实验报告没有差异。我们将更新9个空气阵雨实验的μ子测量数据的meta分析,涵盖了几PeV到几十EeV之间的阵雨能量和几个100MeV到大约10GeV之间的μ子阈值能量。为了比较不同实验的测量结果,交叉校准了它们的能量尺度,并使用基于风淋模拟的通用参考尺度对实验数据进行了比较。在10 PeV以上,我们发现所有强子相互作用模型的模拟都存在μ子过剩,并且随着阵雨能量的增加而增加。用于EPOS-LHC和qgsjt - ii。在不同的实验不确定度假设下,详细分析了增加斜率的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Update on the Combined Analysis of Muon Measurements from Nine Air Shower Experiments
Over the last two decades, various experiments have measured muon densities in extensive air showers over several orders of magnitude in primary energy. While some experiments observed differences in the muon densities between simulated and experimentally measured air showers, others reported no discrepancies. We will present an update of the meta-analysis of muon measurements from nine air shower experiments, covering shower energies between a few PeV and tens of EeV and muon threshold energies from a few 100MeV to about 10GeV. In order to compare measurements from different experiments, their energy scale was cross-calibrated and the experimental data has been compared using a universal reference scale based on air shower simulations. Above 10 PeV, we find a muon excess with respect to simulations for all hadronic interaction models, which is increasing with shower energy. For EPOS-LHC and QGSJet-II.04 the significance of the slope of the increase is analyzed in detail under different assumptions of the individual experimental uncertainties.
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