English

Black hole virial masses from single-epoch photometry: the miniJPAS test case

Astrophysics of Galaxies 2022-04-20 v2 High Energy Astrophysical Phenomena Instrumentation and Methods for Astrophysics

Abstract

Precise measurements of black hole masses are essential to understanding the coevolution of these sources and their host galaxies. We develop a novel approach for computing black hole virial masses using measurements of continuum luminosities and emission line widths from partially overlapping, narrow-band observations of quasars; we refer to this technique as single-epoch photometry. This novel method relies on forward-modelling quasar observations for estimating emission line widths, which enables unbiased measurements even for lines coarsely resolved by narrow-band data. We assess the performance of this technique using quasars from the Sloan Digital Sky Survey (SDSS) observed by the miniJPAS survey, a proof-of-concept project of the Javalambre Physics of the Accelerating Universe Astrophysical Survey (J-PAS) collaboration covering 1deg2\simeq1\,\mathrm{deg}^2 of the northern sky using the 56 J-PAS narrow-band filters. We find remarkable agreement between black hole masses from single-epoch SDSS spectra and single-epoch miniJPAS photometry, with no systematic difference between these and a scatter ranging from 0.4 to 0.07 dex for masses from log(MBH)8\log(M_\mathrm{BH})\simeq8 to 9.75, respectively. Reverberation mapping studies show that single-epoch masses present approximately 0.4 dex precision, letting us conclude that our novel technique delivers black hole masses with only mildly lower precision than single-epoch spectroscopy. The J-PAS survey will soon start observing thousands of square degrees without any source preselection other than the photometric depth in the detection band, and thus single-epoch photometry has the potential to provide details on the physical properties of quasar populations that do not satisfy the preselection criteria of previous spectroscopic surveys.

Keywords

Cite

@article{arxiv.2111.01180,
  title  = {Black hole virial masses from single-epoch photometry: the miniJPAS test case},
  author = {Jonás Chaves-Montero and Silvia Bonoli and Benny Trakhtenbrot and Alejandro Fernández-Centeno and Carolina Queiroz and Luis A. Díaz-García and Rosa María González Delgado and Antonio Hernán-Caballero and Carlos Hernández-Monteagudo and Carlos Lópen-Sanjuan and Roderik Overzier and David Sobral and L. Raul Abramo and Jailson Alcaniz and Narciso Benitez and Saulo Carneiro and A. Javier Cenarro and David Cristóbal-Hornillos and Renato A. Dupke and Alessandro Ederoclite and Antonio Marín-Franch and Claudia Mendes de Oliveira and Mariano Moles and Laerte Sodré and Keith Taylor and Jesús Varela and Héctor Vázquez Ramió and Tamara Civera},
  journal= {arXiv preprint arXiv:2111.01180},
  year   = {2022}
}

Comments

16 pages, 10 figures, accepted by A&A