论文标题

使用多通用器信息关闭银河宇宙射线的起源

Closing in on the origin of Galactic cosmic rays using multimessenger information

论文作者

Tjus, Julia Becker, Merten, Lukas

论文摘要

在宇宙射线物理学中,近年来已经取得了广泛的进步,无论是关于理论还是观察。一方面,直接,间接和次要检测中的巨大细节为通过宇宙射线传输和相互作用详细建模的详细建模提供了基础,为识别银河系宇宙射线源铺平了道路。另一方面,来自宇宙射线可观察的不同渠道的大量约束经常挑战这些模型。 在这篇综述中,我们将总结检测宇宙射线及其次要的最新技术,然后讨论我们可以从耦合我们对宇宙射线可观察物与银河磁场中宇宙射线传输理论的了解中学到的知识。最后,将添加来自中性次要的信息,以绘制非热的天空的多通用时间,其中超新星残留物的假设是主要来源的最佳生存。虽然自1930年代以来就已经知道了这一点,但这种情况的证据正在稳步增长,第一次检测到三个使用Fermi的SNR检测到的GEV Energies的HADRONIC特征。但是,尚未验证SNR作为PEVATRON的存在。审查了有关该问题的讨论以及有关各向异性水平,宇宙射线能量光谱的组成和光谱形状水平的讨论。关于如何找到吸烟宇宙射线源枪的未来观点将结束这一评论。

In cosmic ray physics extensive progress has been made in recent years, both concerning theory and observation. The vast details in direct, indirect and secondary detections on the one hand provide the basis for a detailed modeling of the signatures via cosmic-ray transport and interaction, paving the way for the identification of Galactic cosmic-ray sources. On the other hand, the large number of constraints from different channels of cosmic-ray observables challenges these models frequently. In this review, we will summarize the state-of-the art of the detection of cosmic rays and their secondaries, followed by a discussion what we can learn from coupling our knowledge of the cosmic-ray observables to the theory of cosmic-ray transport in the Galactic magnetic field. Finally, information from neutral secondaries will be added to draw a multimessenger-picture of the non-thermal sky, in which the hypothesis of supernova remnants as the dominant sources survives best. While this has been known since the 1930s, evidence for this scenario is steadily growing, with the first detection of hadronic signatures at GeV energies detected for three SNRs with Fermi. The existence of SNRs as PeVatrons, however, is not validated yet. The discussion of this and other open questions concerning the level of anisotropy, composition and spectral shape of the cosmic-ray energy spectrum is reviewed. Future perspectives of how to find the smoking cosmic-ray source gun concludes this review.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源