Ultra High Energy Cosmic Ray Source Models: Successes, Challenges and General Predictions

N. Globus, R. Blandford
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引用次数: 1

Abstract

Understanding the acceleration of Ultra High Energy Cosmic Rays is one of the great challenges of contemporary astrophysics. In this short review, we summarize the general observational constraints on their composition, spectrum and isotropy which indicate that nuclei heavier than single protons dominate their spectra above ˜ 5 EeV, that they are strongly suppressed above energies ˜ 50 EeV, and that the only significant departure from isotropy is a dipole. Constraints based upon photopion and photodisintegration losses allow their ranges and luminosity density to be estimated. Three general classes of source model are discussed - magnetospheric models (including neutron stars and black holes), jet models (including Gamma Ray Bursts, Active Galactic Nuclei and Tidal Disruption Events) and Diffusive Shock Acceleration models (involving large accretion shocks around rich clusters of galaxies). The value of constructing larger and more capable arrays to measure individual masses at the highest energies and probably identifying their sources is emphasized.
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超高能量宇宙射线源模型:成功、挑战和一般预测
理解超高能量宇宙射线的加速是当代天体物理学的巨大挑战之一。在这篇简短的综述中,我们总结了它们的组成、光谱和各向同性的一般观测约束,表明比单个质子重的原子核在~ 5 EeV以上的光谱中占主导地位,在~ 50 EeV以上的光谱中被强烈抑制,唯一明显偏离各向同性的是偶极子。基于光子和光分解损失的约束允许估计它们的范围和光度密度。本文讨论了三大类源模型——磁层模型(包括中子星和黑洞)、喷流模型(包括伽马射线暴、活动星系核和潮汐破坏事件)和扩散激波加速模型(涉及丰富星系团周围的大吸积激波)。强调了建造更大、更有能力的阵列来测量最高能量下的单个质量并可能确定其来源的价值。
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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