paper

Iron-corrected Single-epoch Black Hole Masses of DESI Quasars at low redshift

arXiv:2502.03684

Abstract

We present a study on the possible overestimation of single-epoch supermassive black hole (SMBH) masses in previous works, based on more than 55,000 type 1 quasars at from the Dark Energy Spectroscopic Instrument (DESI). We confirm that iron emission strength serves as a good tracer of the Eddington ratio, and estimate SMBH masses using an iron-corrected - relation for H, where is the broad line region size and is the continuum luminosity. Compared to our measurements, previous canonical measurements without the iron correction are overestimated by a factor of 1.5 on average. The overestimation can be up to a factor of 5 for super-Eddington quasars. The fraction of super-Eddington quasars in our sample is about 5%, significantly higher than 0.4% derived from the canonical measurements. Using a sample featuring both H and MgII emission lines, we calibrate MgII-based SMBH masses using iron-corrected, H-based SMBH masses and establish an iron-corrected - relation for MgII. The new relation adds an extra term of to the - relation, where denotes the relative iron strength. We use this formula to build a catalog of about 0.5 million DESI quasars at . If these iron-corrected - relations for H and MgII are valid at high redshift, current mass measurements of luminous quasars at would have been overestimated by a factor of 2.3 on average, alleviating the tension between SMBH mass and growth history in the early universe.

20pages, 13 figures; resubmitted to ApJ