Massive black holes seeded by dark matter: Implications for little red dots and gravitational wave signatures
Observations of supermassive black holes (SMBHs) at high redshifts challenge standard seeding scenarios. We examine a dissipative self-interacting dark matter (dSIDM) model in which gravothermal collapse leads to the formation of massive BH seeds ab initio. We utilize a semianalytical framework to predict properties of the dSIDM-seeded SMBH population. Billion solar mass quasars are reproduced along with low-mass faint active galactic nuclei (known as little red dots) with SMBH-to-galaxy stellar mass ratios consistent with recent James Webb Space Telescope observations. To match the abundance of the observed bright quasars, a subpercent-level duty cycle is suggested, implying a large population of dormant SMBHs. The gravitational wave (GW) signals from mergers of these massive SMBHs can be detected by LISA while remaining within the NANOGrav constraints on the GW background. These results provide testable signatures of DM-driven SMBH formation, offering a pathway to probe hidden-sector physics through SMBH and GW observables.
展开 ▾暗物质种子的超大质量黑洞:对小红点和引力波信号的影响 · 本文用耗散自相互作用暗物质模型解释高红移超大质量黑洞形成,预测其种群特性,并指出其引力波信号可被LISA探测且符合NANOGrav约束。
预印本 2025-03-31 · 刊出 2026-07-24 · 收录 2026-08-20