Inferences on relations between distant supermassive black holes and their hosts complemented by the galaxy fundamental plane
arXiv:2204.11948 · doi:10.3847/1538-4357/ac7648
Abstract
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.
9 pages, 6 figures, submitted to ApJ, comments welcome
References in corpus (17)
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Unification of the Fundamental Plane and Super-Massive Black Holes Masses
- The mass relations between supermassive black holes and their host galaxies at 1<z<2 with HST-WFC3
- An Observed Fundamental Plane Relation for Supermassive Black Holes
- lenstronomy II: A gravitational lensing software ecosystem
- Cosmic Evolution of Black Holes and Spheroids. I: The M_BH-sigma Relation at z=0.36
- Cosmic Evolution of Black Holes and Spheroids. III. The M-sigma relation in the last six billion years
- The Sloan Digital Sky Survey Reverberation Mapping Project: No Evidence for Evolution in the M-sigma Relation to z~1
- The cosmic growth of the active black hole population at 1<z<2 in zCOSMOS, VVDS and SDSS
- Evolution in the Black Hole - Galaxy Scaling Relations and the Duty Cycle of Nuclear Activity in Star-Forming Galaxies
- Populating the low-mass end of the relation
- The Main Sequence at contains a sizable fraction of galaxies with compact star formation sizes: a new population of early post-starbursts?
- The Decomposed Bulge and Disk Size-Mass Relations of Massive Galaxies at 1<z<3 in CANDELS
- GOODS-ALMA 2.0: Starbursts in the main sequence reveal compact star formation regulating galaxy evolution prequenching
- One Plane for All: Massive Star-Forming and Quiescent Galaxies Lie on the Same Mass Fundamental Plane at z~0 and z~0.7
- Host Galaxies of Luminous Quasars: Structural Properties and the Fundamental Plane
- Where do quasar hosts lie with respect to the size-mass relation of galaxies?