论文标题

天体物理和宇宙学的暗物质探针

Astrophysical and Cosmological Probes of Dark Matter

论文作者

Boddy, Kimberly K., Lisanti, Mariangela, McDermott, Samuel D., Rodd, Nicholas L., Weniger, Christoph, Ali-Haïmoud, Yacine, Buschmann, Malte, Cholis, Ilias, Croon, Djuna, Erickcek, Adrienne L., Gluscevic, Vera, Leane, Rebecca K., Mishra-Sharma, Siddharth, Muñoz, Julian B., Nadler, Ethan O., Natarajan, Priyamvada, Price-Whelan, Adrian, Vegetti, Simona, Witte, Samuel J.

论文摘要

尽管天体物理和宇宙学探针提供了暗物质的数量和一般特性的明显精确且一致的图片,但其基本性质仍然是物理学中最重要的开放问题之一。在未来十年内获得对暗物质的更全面的理解将需要克服许多理论挑战:这些进步的基础正在奠定,但仍有很多事情要做。即将到来的挑战中的主要领域是建立理论基础,以利用天体物理和宇宙学领域的全部可观察物的全部潜力,跨越早期宇宙到星系内部及其中的恒星。从典型的天体物理学工具包中,从有效的现场理论到机器学习的巨大发展和基于人造的统计推断,识别暗物质的性质还需要重新利用和实施广泛的理论技术。通过这项工作,理论领域将是未来十年中暗物质发现的核心。

While astrophysical and cosmological probes provide a remarkably precise and consistent picture of the quantity and general properties of dark matter, its fundamental nature remains one of the most significant open questions in physics. Obtaining a more comprehensive understanding of dark matter within the next decade will require overcoming a number of theoretical challenges: the groundwork for these strides is being laid now, yet much remains to be done. Chief among the upcoming challenges is establishing the theoretical foundation needed to harness the full potential of new observables in the astrophysical and cosmological domains, spanning the early Universe to the inner portions of galaxies and the stars therein. Identifying the nature of dark matter will also entail repurposing and implementing a wide range of theoretical techniques from outside the typical toolkit of astrophysics, ranging from effective field theory to the dramatically evolving world of machine learning and artificial-intelligence-based statistical inference. Through this work, the theory frontier will be at the heart of dark matter discoveries in the upcoming decade.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源