The impact of applying black hole-host galaxy scaling relations to large galaxy populations
arXiv:2506.08102
Abstract
Supermassive black holes (SMBHs) with dynamically measured masses have shown empirical correlations with host galaxy properties. These correlations are often the only method available to estimate SMBH masses and gather statistics for large galaxy populations across a range of redshifts, even though the scaling relations themselves are derived from a small subset of nearby galaxies. Depending on the scaling relation used, estimated SMBH masses can vary significantly. The most widely used scaling relations are the MM and M relations, where M is galaxy bulge mass and is the bulge velocity dispersion. In this paper, we determine how severely the choice of scaling relation impacts SMBH mass estimates for different subsets of a large galaxy population. For this analysis we use a sample of 400,000 galaxies, including 1,240 Type 1 AGN from the Sloan Digital Sky Survey. We calculate SMBH masses from MM and M and compare to single-epoch virial SMBH masses from broad-line H, which are derived independently of black hole-host galaxy scaling relations. We find that SMBH masses derived from the single-epoch virial relation for H are better reproduced by M than MM. Finally, in cases where and M cannot be measured directly, we show that it is possible to infer from photometry with more accuracy than we can infer M.
Accepted for publication in ApJ. Dataset derived from https://cdsarc.cds.unistra.fr/viz-bin/cat/J/ApJS/210/3