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Constraining the cosmic ray propagation halo thickness using Fermi-LAT observations of high-latitude clouds

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【作者】 姚玉华乔冰强刘伟袁强胡红波毕效军杨朝文郭义庆

【Author】 Yuhua Yao;Bing-Qiang Qiao;Wei Liu;Qiang Yuan;Hong-Bo Hu;Xiao-Jun Bi;Chao-Wen Yang;Yi-Qing Guo;College of Physics, Sichuan University;Key Laboratory of Particle Astrophysics, Institute of High Energy Physics, Chinese Academy of Sciences;Key Laboratory of Dark Matter and Space Astronomy, Purple Mountain Observatory, Chinese Academy of Sciences;School of Astronomy and Space Science, University of Science and Technology of China;University of Chinese Academy of Sciences;

【机构】 College of Physics, Sichuan UniversityKey Laboratory of Particle Astrophysics, Institute of High Energy Physics, Chinese Academy of SciencesKey Laboratory of Dark Matter and Space Astronomy, Purple Mountain Observatory, Chinese Academy of SciencesSchool of Astronomy and Space Science, University of Science and Technology of ChinaUniversity of Chinese Academy of Sciences

【摘要】 The diffusive halo is a basic characteristic of cosmic ray(CR) propagation and can advance our understanding of many CR-related phenomena and indirect dark matter. The method used to derive the halo size often has degeneracy problems and is thus affected by large uncertainties. The diffuse γ rays from high-latitude clouds might shed light on the halo size independently. Because predictions using the spatially dependent propagation(SDP) model have better agreement with the observed CRs than those of the conventional propagation model, in this work, we investigated halo thickness based on the SDP model using Fermi-LAT γ-ray observations of high-and intermediatevelocity clouds. We found that to avoid exceeding the relative γ-ray emissivity in high-latitude clouds, the halo thickness should be in the range of 3.3-9 kpc. Moreover, the spatial morphology of γ-rays estimated based on the SDP model for different values of the halo thickness are distinctive, which provides us with a tool to determine the halo size. This newly developed model can be tested and tuned using multi-wavelength observations in future studies.

【Abstract】 The diffusive halo is a basic characteristic of cosmic ray(CR) propagation and can advance our understanding of many CR-related phenomena and indirect dark matter. The method used to derive the halo size often has degeneracy problems and is thus affected by large uncertainties. The diffuse γ rays from high-latitude clouds might shed light on the halo size independently. Because predictions using the spatially dependent propagation(SDP) model have better agreement with the observed CRs than those of the conventional propagation model, in this work, we investigated halo thickness based on the SDP model using Fermi-LAT γ-ray observations of high-and intermediatevelocity clouds. We found that to avoid exceeding the relative γ-ray emissivity in high-latitude clouds, the halo thickness should be in the range of 3.3-9 kpc. Moreover, the spatial morphology of γ-rays estimated based on the SDP model for different values of the halo thickness are distinctive, which provides us with a tool to determine the halo size. This newly developed model can be tested and tuned using multi-wavelength observations in future studies.

【基金】 Supported by the National Key R&D Program of China (2018YFA0404202);the National Natural Science Foundation of China (11635011, 11875264,11722328, 11851305, U1738205, U2031110)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2021年10期
  • 【分类号】P172.4
  • 【下载频次】23
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