首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Analysis of Cosmic Rays' Atmospheric Effects and Their Relationships to Cutoff Rigidity and Zenith Angle Using Global Muon Detector Network Data
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Analysis of Cosmic Rays' Atmospheric Effects and Their Relationships to Cutoff Rigidity and Zenith Angle Using Global Muon Detector Network Data

机译:宇宙射线大气效应及其与全球μ子探测器网络数据截止刚度和天顶角的关系分析

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摘要

Cosmic rays are charged particles whose flux observed at Earth shows temporal variations related to space weather phenomena and may be an important tool to study them. The cosmic ray intensity recorded with ground‐based detectors also shows temporal variations arising from atmospheric variations. In the case of muon detectors, the main atmospheric effects are related to pressure and temperature changes. In this work, we analyze both effects using data recorded by the Global Muon Detector Network, consisting of four multidirectional muon detectors at different locations, in the period between 2007 and 2016. For each Global Muon Detector Network directional channel, we obtain coefficients that describe the pressure and temperature effects. We then analyze how these coefficients can be related to the geomagnetic cutoff rigidity and zenith angle associated with cosmic ray particles observed by each channel. In the pressure effect analysis, we found that the observed barometric coefficients show a very clear logarithmic correlation with the cutoff rigidity divided by the zenith angle cosine. On the other hand, the temperature coefficients show a good logarithmic correlation with the product of the cutoff and zenith angle cosine after adding a term proportional to the sine of geographical latitude of the observation site. This additional term implies that the temperature effect measured in the Northern Hemisphere detectors is stronger than that observed in the Southern Hemisphere. The physical origin of this term and of the good correlations found in this analysis should be studied in detail in future works.
机译:宇宙射线是带电粒子,其在地球上观察到的助焊剂显示与空间天气现象有关的时间变化,并且可能是研究它们的重要工具。记录的基于地基探测器的宇宙射线强度还显示出由大气变化产生的时间变化。在μON探测器的情况下,主要的大气效应与压力和温度变化有关。在这项工作中,我们使用由全局MuOn探测器网络记录的数据分析了两种效果,该效果由不同位置的四个多向MuOn探测器组成,在2007年和2016年之间。对于每个全局MuON探测器网络定向通道,我们获得描述的系数压力和温度效应。然后,我们分析这些系数如何与由每个通道观察到的宇宙射线粒子相关的地磁切断刚度和天顶角有关。在压力效应分析中,我们发现观察到的气压系数与由天顶角余弦除以的截止刚度的非常明显的对数相关性。另一方面,在添加与观察部位的地理纬度的正弦成比例之后,温度系数与截止和天顶角余弦的乘积具有良好的对数相关性。这种额外的术语意味着在北半球检测器中测量的温度效应比在南半球观察到的温度效应。该术语的物理来源和在该分析中发现的良好相关性应在未来的作品中详细研究。

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    State Key Laboratory of Space Weather National Space Science Center Chinese Academy of Sciences Beijing China;

    State Key Laboratory of Space Weather National Space Science Center Chinese Academy of Sciences Beijing China;

    National Institute for Space Research S?o José dos Campos Brazil;

    National Institute for Space Research S?o José dos Campos Brazil;

    National Institute for Space Research S?o José dos Campos Brazil;

    National Institute for Space Research S?o José dos Campos Brazil;

    Physics Department Shinshu University Matsumoto Japan;

    State Key Laboratory of Space Weather National Space Science Center Chinese Academy of Sciences Beijing China;

    State Key Laboratory of Space Weather National Space Science Center Chinese Academy of Sciences Beijing China;

    Center of Radio Astronomy and Astrophysics Mackenzie Engineering School Mackenzie Presbyterian University S?o Paulo Brazil;

    Graduate School of Science Chiba University Chiba City Japan;

    Institute of Space and Astronautical Science Japan Aerospace Exploration Agency Sagamihara Japan;

    Physics Department Shinshu University Matsumoto Japan;

    National Institute for Space Research S?o José dos Campos Brazil;

    National Institute for Space Research S?o José dos Campos Brazil;

    Physics Department Kuwait University Kuwait City Kuwait;

    Physics Department Kuwait University Kuwait City Kuwait;

    Institute for Space‐Earth Environmental Research Nagoya University Nagoya Japan;

    School of Natural Sciences University of Tasmania Hobart Tasmania Australia;

    School of Natural Sciences University of Tasmania Hobart Tasmania Australia;

    Bartol Research Institute Department of Physics and Astronomy University of Delaware Newark DE USA;

    Department of Applied Sciences College of Technological Studies Public Authority for Applied Education and Training Shuwaikh Kuwait;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 空间物理;
  • 关键词

    Analysis of Cosmic; Rays' Atmospheric Effects; Their Relationships to;

    机译:分析宇宙;光线的大气效应;他们的关系;

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