Galactic Diffuse Emission from Radio to Ultra-high-energy γ-Rays in Light of Up-to-date Cosmic-Ray Measurements

Xin He, Pei-pei Zhang, Qiang Yuan, Yi-qing Guo
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引用次数: 1

Abstract

Cosmic rays (CRs) travel throughout the Galaxy, leaving traces from radio to ultra-high-energy γ-rays due to interactions with the interstellar gas, radiation field, and magnetic field. Therefore, it is necessary to utilize multiwavelength investigations on the Galactic diffuse emission to shed light on the physics of CR production and propagation. In this work, we present a spatially dependent propagation scenario, taking account of a local source contribution, while making allowances for an additional CR component freshly accelerated near their sources. In this picture, after reproducing the particle measurements at the solar system, we calculated the intensity and compared the spectral energy distribution to observations from Fermi-LAT and LHAASO-KM2A in the γ-ray band, and from WMAP and Planck among other radio surveys at lower energies. Multiband data considered in conjunction, the former comparison exhibits sufficiently good consistency in favor of our model, while the latter calls for improvement in data subtraction and processing. From this standpoint, there remains potential for advanced observations at energies from milli-eVs to MeVs toward the Galactic plane, in order to evaluate our model further and more comprehensively in the future.
从最新宇宙射线测量结果看射电到超高能 γ 射线的银河漫射辐射
宇宙射线(CR)在整个银河系中传播,由于与星际气体、辐射场和磁场的相互作用,留下了从射电到超高能γ射线的痕迹。因此,有必要利用对银河系漫射辐射的多波长研究来揭示 CR 产生和传播的物理过程。在这项工作中,我们提出了一种与空间相关的传播方案,考虑到了本地源的贡献,同时考虑到了在其源附近新加速的额外 CR 成分。在这种情况下,在重现太阳系的粒子测量结果之后,我们计算了强度,并将光谱能量分布与费米-LAT 和 LHAASO-KM2A 在 γ 射线波段的观测结果,以及 WMAP 和普朗克等其他射电巡天在较低能量波段的观测结果进行了比较。将多波段数据结合起来考虑,前者显示出足够好的一致性,有利于我们的模型,而后者则需要在数据减除和处理方面进行改进。从这个角度来看,我们仍有潜力在银河系平面进行毫电子伏特到兆电子伏特能量的高级观测,以便在未来进一步更全面地评估我们的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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