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GeV-TeV cosmic-ray spectral anomaly as due to reacceleration by weak shocks in the Galaxy

机译:GeV-TeV宇宙射线光谱异常,这是由于银河系中的微弱冲击而重新加速

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Recent cosmic-ray measurements have found an anomaly in the cosmic-ray energy spectrum at GeV-TeV energies. Although the origin of the anomaly is not clearly understood, suggested explanations include the effect of cosmic-ray source spectrum, propagation effects, and the effect of nearby sources. In this paper, we propose that the spectral anomaly might be an effect of reacceleration of cosmic rays by weak shocks in the Galaxy. After acceleration by strong supernova remnant shock waves, cosmic rays undergo diffusive propagation through the Galaxy. During the propagation, cosmic rays may again encounter expanding supernova remnant shock waves, and get re-accelerated. As the probability of encountering old supernova remnants is expected to be larger than the younger remnants because of their bigger sizes, reacceleration is expected to be produced mainly by weaker shocks. Since weaker shocks generate a softer particle spectrum, the resulting re-accelerated component will have a spectrum steeper than the initial cosmic-ray source spectrum produced by strong shocks. For a reasonable set of model parameters, it is shown that the re-accelerated component can dominate the GeV energy region while the non-reaccelerated component dominates at higher energies, thereby explaining the observed GeV-TeV spectral anomaly.
机译:最近的宇宙射线测量发现,在GeV-TeV能量处的宇宙射线能谱中存在异常。尽管尚不清楚该异常的起因,但​​建议的解释包括宇宙射线源光谱的影响,传播影响以及附近源的影响。在本文中,我们提出光谱异常可能是由于银河系中的微弱冲击而使宇宙射线重新加速的结果。在强大的超新星残余冲击波加速后,宇宙射线通过银河进行扩散传播。在传播过程中,宇宙射线可能再次遇到膨胀的超新星残余冲击波,并重新加速。由于遇到较大的超新星残留物的可能性较大,因此预计会比较年轻的残留物更大,因此,预计加速作用主要是由较弱的冲击产生的。由于较弱的冲击会产生较柔和的粒子光谱,因此所得重新加速的分量将具有比由强冲击产生的初始宇宙射线源光谱陡峭的光谱。对于一组合理的模型参数,表明重新加速的分量可以主导GeV能量区域,而未加速的分量可以在较高能量下主导,从而解释了观测到的GeV-TeV光谱异常。

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