Auger-TA工作组关于UHECR到达方向的2022年报告

A. Matteo, L. Anchordoqui, T. Bister, R. D. Almeida, O. Deligny, L. Deval, G. Farrar, U. Giaccari, G. Golup, R. Higuchi, J. Kim, M. Kuznetsov, I. Marics, G. Rubtsov, P. Tinyakov, F. Urban
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引用次数: 4

摘要

60多年后,将超高能宇宙射线(uhecr)加速到我们在地球上观测到的强大能量的强大引擎仍然是个谜。假设标准物理,我们预计UHECR源位于本地宇宙(高达几百Mpc)。物质在局部宇宙中的分布是各向异性的,我们期望这种各向异性会印在UHECR到达方向的分布上。尽管星系间和星系间的磁场会使带电的uhecr发生偏转,并且会扭曲这些各向异性,但有关源分布的一些信息被保留了下来。在这篇论文中,我们介绍了皮埃尔·奥格天文台和望远镜阵列联合搜索(a)最大尺度各向异性(谐波偶极子和四极子)和(b)与附近星暴星系样本的相关性以及追踪250 Mpc内恒星质量的2MRS目录的结果。这项分析用最新的可用数据更新了我们之前的结果,特别是增加了3年的新望远镜阵列数据。主要发现是俄格探测到的E≥38 EeV或TA探测到的E≥49 EeV的uhecr的到达方向为12.1% - 3.1%+4.5%,与附近星爆星系的位置在15.1°- 3.0°+4.6°角尺度上的相关性,实验后显著性为4.7σ,高于我们之前研究得到的4.2σ。
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2022 report from the Auger-TA working group on UHECR arrival directions
After over 60 years, the powerful engines that accelerate ultra-high-energy cosmic rays (UHECRs) to the formidable energies at which we observe them from Earth remain mysterious. Assuming standard physics, we expect UHECR sources to lie within the local Universe (up to a few hundred Mpc). The distribution of matter in the local Universe is anisotropic, and we expect this anisotropy to be imprinted on the distribution of UHECR arrival directions. Even though intervening intergalactic and Galactic magnetic fields deflect charged UHECRs and can distort these anisotropies, some amount of information on the distribution of the sources is preserved. In this proceedings contribution, we present the results of the joint Pierre Auger Observatory and Telescope Array searches for (a) the largest-scale anisotropies (the harmonic dipole and quadrupole) and (b) correlations with a sample of nearby starburst galaxies and the 2MRS catalogue tracing stellar mass within 250 Mpc. This analysis updates our previous results with the most recent available data, notably with the addition of 3 years of new Telescope Array data. The main finding is a correlation between the arrival directions of 12.1%−3.1%+4.5% of UHECRs detected with E ≥ 38 EeV by Auger or with E ≳ 49 EeV by TA and the positions of nearby starburst galaxies on a 15.1°−3.0°+4.6° angular scale, with a 4.7σ post-trial significance, up from 4.2σ obtained in our previous study.
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