论文标题

SnowMass2021宇宙边界:暗物质搜索与多波长/多通用天体物理学之间的协同作用

Snowmass2021 Cosmic Frontier: Synergies between dark matter searches and multiwavelength/multimessenger astrophysics

论文作者

Ando, Shin'ichiro, Baum, Sebastian, Boylan-Kolchin, Michael, Bulbul, Esra, Burgess, Michael, Cholis, Ilias, von Doetinchem, Philip, Fan, JiJi, Harding, Patrick J., Horiuchi, Shunsaku, Leane, Rebecca K., Macias, Oscar, Mack, Katie, Murase, Kohta, Necib, Lina, Olcina, Ibles, Olivera-Nieto, Laura, Park, Jong-Chul, Perez, Kerstin, Regis, Marco, Rodd, Nicholas L., Rott, Carsten, Sinha, Kuver, Takhistov, Volodymyr, Tsai, Yun-Tse, Walker, Devin

论文摘要

该白皮书着重于暗物质搜索中遇到的天体物理系统。在间接和直接暗物质搜索中,天体物理系统学通常是对暗物质敏感的主要限制因素。正如有多种形式的暗物质搜索一样,背景有多种形式。我们试图使用光子(无线电和伽马射线)在暗物质搜索中产生的主要系统学,以覆盖宇宙射线,中微子和引力波。例子包括宇宙信使的天体物理来源及其相互作用,可以模仿暗物质特征。反过来,这些取决于在理解宇宙环境(气体分布,磁场构型)以及相关的核天体物理学方面的相应研究。我们还涵盖了用于探测暗物质的天体和星系的天体物理学,从黑洞到矮星系。最后,我们涵盖了与探测暗物质分布和运动学有关的天体物理背景,这影响了广泛的暗物质研究。将来,多理智的天文学的兴起以及将其用于暗物质的新颖分析方法将提供各种战略方法,以继续增强我们对天体物理背景的理解,以提高对暗物质的敏感性。

This whitepaper focuses on the astrophysical systematics which are encountered in dark matter searches. Oftentimes in indirect and also in direct dark matter searches, astrophysical systematics are a major limiting factor to sensitivity to dark matter. Just as there are many forms of dark matter searches, there are many forms of backgrounds. We attempt to cover the major systematics arising in dark matter searches using photons -- radio and gamma rays -- to cosmic rays, neutrinos and gravitational waves. Examples include astrophysical sources of cosmic messengers and their interactions which can mimic dark matter signatures. In turn, these depend on commensurate studies in understanding the cosmic environment -- gas distributions, magnetic field configurations -- as well as relevant nuclear astrophysics. We also cover the astrophysics governing celestial bodies and galaxies used to probe dark matter, from black holes to dwarf galaxies. Finally, we cover astrophysical backgrounds related to probing the dark matter distribution and kinematics, which impact a wide range of dark matter studies. In the future, the rise of multi-messenger astronomy, and novel analysis methods to exploit it for dark matter, will offer various strategic ways to continue to enhance our understanding of astrophysical backgrounds to deliver improved sensitivity to dark matter.

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