School of Astronomy and Space Science, Nanjing University, Nanjing, China.
Key Laboratory of Modern Astronomy and Astrophysics, Nanjing University, Ministry of Education, Nanjing, China.
Nature. 2024 Aug;632(8027):1009-1013. doi: 10.1038/s41586-024-07821-2. Epub 2024 Aug 14.
The nucleus of almost all massive galaxies contains a supermassive black hole (BH). The feedback from the accretion of these BHs is often considered to have crucial roles in establishing the quiescence of massive galaxies, although some recent studies show that even galaxies hosting the most active BHs do not exhibit a reduction in their molecular gas reservoirs or star formation rates. Therefore, the influence of BHs on galaxy star formation remains highly debated and lacks direct evidence. Here, based on a large sample of nearby galaxies with measurements of masses of both BHs and atomic hydrogen (HI), the main component of the interstellar medium, we show that the HI gas mass to stellar masses ratio (μ = M/M) is more strongly correlated with BH masses (M) than with any other galaxy parameters, including stellar mass, stellar mass surface density and bulge masses. Moreover, once the μ-M correlation is considered, μ loses dependence on other galactic parameters, demonstrating that M serves as the primary driver of μ. These findings provide important evidence for how the accumulated energy from BH accretion regulates the cool gas content in galaxies, by ejecting interstellar medium gas and/or suppressing gas cooling from the circumgalactic medium.
几乎所有大质量星系的核心都包含一个超大质量黑洞 (BH)。这些 BH 的吸积反馈通常被认为在建立大质量星系的静止状态方面起着至关重要的作用,尽管最近的一些研究表明,即使是宿主最活跃 BH 的星系也没有表现出其分子气体储量或恒星形成率的降低。因此,BH 对星系恒星形成的影响仍然存在很大争议,缺乏直接证据。在这里,我们基于一个具有 BH 和原子氢 (HI) 质量测量的大量近邻星系样本,主要的星际介质组成部分,表明 HI 气体质量与恒星质量的比值 (μ = M/M) 与 BH 质量 (M) 的相关性比任何其他星系参数都要强,包括恒星质量、恒星质量面密度和星系核质量。此外,一旦考虑了 μ-M 相关性,μ 就不再依赖于其他星系参数,这表明 M 是 μ 的主要驱动因素。这些发现为 BH 吸积积累的能量如何通过逐出星际介质气体和/或抑制来自星系周围介质的气体冷却来调节星系中的冷气体含量提供了重要证据。