论文标题
暗物质自我相互作用的天体物理测试
Astrophysical Tests of Dark Matter Self-Interactions
论文作者
论文摘要
除了具有带有光介体或强大动力学的黑暗扇区的物理学外,自我相互作用的暗物质(SIDM)通常是在物理的场景中产生的。自我互动允许通过光环的能量和动量传输,从而改变其结构和动力学相对于无碰撞暗物质产生的结构和动力学。 SIDM模型提供了一种有希望的方法来解释银河旋转曲线的多样性,它们形成了一种预测性和多功能框架,用于解释与暗物质相关的天体物理现象。这篇综述提供了深度解释,从银河卫星(深色和发光)到星系簇和大规模结构的物体中暗物质自相互作用的物理影响。第二个主要部分描述了用于约束包括当前约束的SIDM模型的方法,目的是通过即将进行的Galaxy Surveys进行测试。该部分还提供了未解决的小规模结构形成问题和测试简单SIDM模型的具体方法的详细审查。综述是通过讨论自我互动的理论动机,具有重型和重力效应的退化,对单组分弹性互动SIDM框架的扩展以及未来的观察和理论前景的讨论。
Self-interacting dark matter (SIDM) arises generically in scenarios for physics beyond the Standard Model that have dark sectors with light mediators or strong dynamics. The self-interactions allow energy and momentum transport through halos, altering their structure and dynamics relative to those produced by collisionless dark matter. SIDM models provide a promising way to explain the diversity of galactic rotation curves, and they form a predictive and versatile framework for interpreting astrophysical phenomena related to dark matter. This review provides a comprehensive explanation of the physical effects of dark matter self-interactions in objects ranging from galactic satellites (dark and luminous) to clusters of galaxies and the large-scale structure. The second major part describes the methods used to constrain SIDM models including current constraints, with the aim of advancing tests with upcoming galaxy surveys. This part also provides a detailed review of the unresolved small-scale structure formation issues and concrete ways to test simple SIDM models. The review is rounded off by a discussion of the theoretical motivation for self-interactions, degeneracies with baryonic and gravitational effects, extensions to the single-component elastic-interactions SIDM framework, and future observational and theoretical prospects.