Flux predictions in the transition region incorporating the effects from propagation of cosmic rays in the Galactic magnetic field

A. Kääpä, K. Kampert, J. Becker Tjus
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引用次数: 2

Abstract

Galactic cosmic rays (GCRs) and (anisotropically injected) extragalactic cosmic rays (EGCRs) are both affected by the Galactic magentic field (GMF) on their voyage to Earth at energies pertaining to the transition from GCRs to EGCRs, such that their flux, composition and arrival directions are modified. GCRs increasingly leak from the Galaxy with rising energy, leading to a flux suppression. The flux modification imposed on EGCRs is more complex, but may exhibit (subtle) spectral breaks depending on the direction and nature of the injected anisotropy. Using a full Monte Carlo approach with CRPropa and making realistic and minimal assumptions about the injected GCR and EGCR fluxes, we derive a prediction of the total all-particle flux in the transition region. We find that it cannot account for the flux measured by various cosmic ray experiments in this energy range. This calls for the need of an additional component to the flux in the transition region.
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结合宇宙射线在银河系磁场中传播的影响的过渡区的通量预测
银河宇宙射线(GCRs)和(各向异性注入的)河外宇宙射线(EGCRs)在到达地球的过程中都受到银河磁场(GMF)的影响,其能量与从GCRs到EGCRs的转变有关,从而改变了它们的通量、组成和到达方向。随着能量的上升,gcr越来越多地从银河系泄漏,导致通量抑制。施加在egcr上的通量修正更为复杂,但根据注入各向异性的方向和性质,可能表现出(微妙的)光谱断裂。利用CRPropa的全蒙特卡罗方法,对注入的GCR和EGCR通量进行了现实和最小的假设,得到了过渡区全粒子总通量的预测。我们发现它不能解释在这个能量范围内各种宇宙射线实验测量的通量。这就要求在过渡区的通量中增加一个额外的分量。
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