论文标题
结构形成和全局21-CM信号在存在类似库仑的暗物质 - 巴里昂相互作用的情况下
Structure Formation and the Global 21-cm Signal in the Presence of Coulomb-like Dark Matter-Baryon Interactions
论文作者
论文摘要
许多引人入胜的暗物质(DM)场景具有DM颗粒和重子之间的类似库仑的相互作用,其中弹性散射尺度的横截面具有相对粒子速度为$ v^{ - 4} $。先前的研究调用了这种相互作用,以在冷DM和重子之间产生热量交换,并改变氢的温度演化。在这项研究中,除了对氢的热史的已知影响外,我们还介绍了库仑样散射对结构形成的影响的全面研究。我们发现,在宇宙黎明处显着改变氢温度的相互作用也极大地抑制了采购Lyman-$α$背景的星系的形成,进一步影响了全局21-CM信号。特别是,相对于冷,无碰撞的DM,当前观察性上限的相互作用横截面导致恒星形成光环的丰度下降了$ \ sim 2 $ 2 $ 2 $。我们还发现,100%毫米的DM无法在参数空间的任何部分重现报告边缘异常的深度和时间。这些结果准确地为宇宙学中全球21-CM信号和结构形成的建模与DM-Baryon散射中的建模,对未来和即将进行的宇宙学数据分析产生了影响。
Many compelling dark matter (DM) scenarios feature Coulomb-like interactions between DM particles and baryons, in which the cross section for elastic scattering scales with relative particle velocity as $v^{-4}$. Previous studies have invoked such interactions to produce heat exchange between cold DM and baryons and alter the temperature evolution of hydrogen. In this study, we present a comprehensive study of the effects of Coulomb-like scattering on structure formation, in addition to the known effects on the thermal history of hydrogen. We find that interactions which significantly alter the temperature of hydrogen at Cosmic Dawn also dramatically suppress the formation of galaxies that source the Lyman-$α$ background, further affecting the global 21-cm signal. In particular, an interaction cross section at the current observational upper limit leads to a decrease in the abundance of star-forming halos by a factor of $\sim 2$ at $z\sim 20$, relative to cold, collisionless DM. We also find that DM that is 100% millicharged cannot reproduce the depth and the timing of the reported EDGES anomaly in any part of the parameter space. These results critically inform modeling of the global 21-cm signal and structure formation in cosmologies with DM-baryon scattering, with repercussions for future and upcoming cosmological data analysis.