论文标题

Snowmass2021宇宙边界:宇宙射线和高能光子探针的景观

Snowmass2021 Cosmic Frontier: The landscape of cosmic-ray and high-energy photon probes of particle dark matter

论文作者

Aramaki, Tsuguo, Boezio, Mirko, Buckley, James, Bulbul, Esra, von Doetinchem, Philip, Donato, Fiorenza, Harding, J. Patrick, Karwin, Chris, Kumar, Jason, Leane, Rebecca K., Matsumoto, Shigeki, McEnry, Julie, Melia, Tom, Perez, Kerstin, Profumo, Stefano, Salazar-Gallegos, Daniel, Strong, Andrew W., Roach, Brandon, Sanchez-Conde, Miguel A., Shutt, Tom, Takada, Atsushi, Tanimori, Toru, Tomsick, John, Watanabe, Yu, Williams, David A.

论文摘要

这份白皮书讨论了对产生光子和宇宙射线的粒子暗物质过程敏感的实验的当前景观和前景。大部分伽马射线天空仍无法在一种灵敏度上探索,这将使发现暗物质信号。目前正在操作GEV-TEV观测值,例如费米 - 拉特,大气中的Cherenkov望远镜和水Cherenkov检测器阵列,继续针对银河系内外的几个有希望的深色物质环境。很快,随着灵敏度的提高,尤其是天空中的扩展目标,将继续进行一些新的实验。本文回顾了伽玛射线观测器的几个近期和长期计划,其中包括数百个TEV的MEV能量。同样,X射线的天空已经并继续受到十年历史的观测值的监测。即将到来的望远镜将进一步加强搜索,并为线条中的新发现空间,例如无菌中微子和轴轴测转换。此外,此概述讨论了当前操作的宇宙射线探针和未来实验的景观,这些探针将阐明宇宙辐射中现有的持续异常和长矛头可能的新发现。最后,本文讨论了必要的横截面测量值,这些测量需要在山脉人群中进行,以减少解释空间中的光子和宇宙射线测量值时的实质性不确定性。

This white paper discusses the current landscape and prospects for experiments sensitive to particle dark matter processes producing photons and cosmic rays. Much of the gamma-ray sky remains unexplored on a level of sensitivity that would enable the discovery of a dark matter signal. Currently operating GeV-TeV observatories, such as Fermi-LAT, atmospheric Cherenkov telescopes, and water Cherenkov detector arrays continue to target several promising dark matter-rich environments within and beyond the Galaxy. Soon, several new experiments will continue to explore, with increased sensitivity, especially extended targets in the sky. This paper reviews the several near-term and longer-term plans for gamma-ray observatories, from MeV energies up to hundreds of TeV. Similarly, the X-ray sky has been and continues to be monitored by decade-old observatories. Upcoming telescopes will further bolster searches and allow new discovery space for lines from, e.g., sterile neutrinos and axion-photon conversion. Furthermore, this overview discusses currently operating cosmic-ray probes and the landscape of future experiments that will clarify existing persistent anomalies in cosmic radiation and spearhead possible new discoveries. Finally, the article closes with a discussion of necessary cross section measurements that need to be conducted at colliders to reduce substantial uncertainties in interpreting photon and cosmic-ray measurements in space.

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