论文标题

超高能量偶极子及以后

Ultrahigh-energy dipole and beyond

论文作者

Lang, Rodrigo Guedes, Taylor, Andrew M., de Souza, Vitor

论文摘要

皮埃尔螺旋钻天文台的最新数据揭示了超高能量宇宙射线(UHECR)的到达方向分布中存在大规模偶极子。在这项工作中,我们建立了对这种偶性行为的扩散起源的理解,以及其对能量和天体物理源假设(例如静脉外磁场强度和宇宙射线组成)的依赖性。我们提出了一种新的分析方法,用于计算来自单个源的Cr的角度分布,并讨论预期稳态偶极子结果的机制。我们还提出了一种半分析方法,用于用所得偶极子的能量计算出源的偶极子的能量。我们表明,局部来源允许在较大能量范围内具有偶极子的强劲增长。讨论了从最高能量下从偶极向非偶极状态过渡的可能性及其对源密度,磁场强度和宇宙射线组成的影响。

Recent data from the Pierre Auger Observatory has revealed the presence of a large-scale dipole in the arrival direction distribution of ultra-high energy cosmic rays (UHECR). In this work, we build up an understanding of the diffusive origin of such a dipolar behavior as well as its dependency on energy and astrophysical source assumptions such as extragalactic magnetic field strength and cosmic ray composition. We present a novel analytical approach for calculating the angular distribution of CR coming from a single source and discuss the regimes in which the steady-state dipole result is expected. We also present a semianalytical method for calculating the evolution with energy of the resultant dipole for an ensemble of sources. We show that a local source allows for a strong growth of the dipole with energy over a large energy range. The possibility of a transition from a dipolar to non-dipolar regime at the highest energies and its implications for the source density, magnetic field intensity, and cosmic ray composition are discussed.

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