论文标题
关于遥远的超级质量黑洞及其宿主之间关系的推论
Inferences on relations between distant supermassive black holes and their hosts complemented by the galaxy fundamental plane
论文作者
论文摘要
超级质量黑洞及其宿主星系之间的基本关系的实现将对天体物理学产生深远的影响。为了进一步对其共同进化的研究,进行了研究,以洞悉现金及其宿主在较早时期是否遵循黑洞(BH)质量(BH)质量和恒星速度分散体之间的局部关系。我们在0.2 <z <0.8的情况下使用584个SDSS类星体,并在黑洞测量中使用,并从超级Suprime-Cam Subaru战略计划中使用其宿主的性质。通过使用Galaxy质量基本平面对类似的红移的不活跃星系,根据宿主星系的恒星质量和宿主星系的大小来实现恒星速度分散体的推断。与过去的研究一致,类星体从局部M_BH-Sigma关系中占据了较高的位置,该关系被认为是扁平的,同时保持了与局部值一致的M_BH/M*的比率。基于样品的正向模型,我们证明了不断发展的内在M_BH-Sigma关系可以与观测值相匹配。但是,我们假设这些变化可能反映了M_BH和M*之间非发展的内在关系。令人放心的是,对于巨大,静止或紧凑的星系的局部M_BH-Sigma有迁移的迹象。因此,高红移的大部分凸起寄主处于开发阶段,并且很可能在以后的时间与它们的黑洞在质量缩放关系上保持一致。
The realization of fundamental relations between supermassive black holes and their host galaxies would have profound implications in astrophysics. To add further context to studies of their co-evolution, an investigation is carried out to gain insight as to whether quasars and their hosts at earlier epochs follow the local relation between black hole (BH) mass and stellar velocity dispersion. We use 584 SDSS quasars at 0.2 < z < 0.8 with black hole measurements, and properties of their hosts from the Hyper Suprime-Cam Subaru Strategic Program. An inference of the stellar velocity dispersion is achieved for each based on the stellar mass and size of the host galaxy by using the galaxy mass fundamental plane for inactive galaxies at similar redshifts. In agreement with past studies, quasars occupy an elevated position from the local M_BH-sigma relation, considered as a flattening, while maintaining ratios of M_BH/M* consistent with local values. Based on a forward-modeling of the sample, we demonstrate that an evolving intrinsic M_BH-sigma relation can match the observations. However, we hypothesize that these changes may be a reflection of a non-evolving intrinsic relationship between M_BH and M*. Reassuringly, there are signs of migration onto the local M_BH-sigma for galaxies that are either massive, quiescent or compact. Thus, the majority of the bulges of quasar hosts at high redshift are in a development stage and likely to align with their black holes onto the mass scaling relation at later times.