Extending the Calibration of CIV-Based Single-Epoch Black Hole Mass Estimators for Active Galactic Nuclei
Abstract
We provide an updated calibration of CIV broad emission line-based single-epoch (SE) black hole (BH) mass estimators for active galactic nuclei (AGNs) using new data for six reverberation-mapped AGNs at redshift with BH masses (bolometric luminosities) in the range ( erg s). New rest-frame UV-to-optical spectra covering 1150-5700 \AA\ for the six AGNs were obtained with the Hubble Space Telescope (HST). Multi-component spectral decompositions of the HST spectra were used to measure SE emission-line widths for the CIV, MgII, and H lines as well as continuum luminosities in the spectral region around each line. We combine the new data with similar measurements for a previous archival sample of 25 AGNs to derive the most consistent and accurate calibrations of the CIV-based SE BH mass estimators against the H reverberation-based masses, using three different measures of broad-line width: full-width at half maximum (FWHM), line dispersion () and mean absolute deviation (MAD). The newly expanded sample at redshift covers a dynamic range in BH mass (bolometric luminosity) of (erg s), and we derive the new CIV-based mass estimators using a Bayesian linear regression analysis over this range. We generally recommend the use of or MAD rather than FWHM to obtain a less biased velocity measurement of the CIV emission line, because its narrow-line component contribution is difficult to decompose from the broad-line profile.
Keywords
Cite
@article{arxiv.1703.09867,
title = {Extending the Calibration of CIV-Based Single-Epoch Black Hole Mass Estimators for Active Galactic Nuclei},
author = {Daeseong Park and Aaron J. Barth and Jong-Hak Woo and Matthew A. Malkan and Tommaso Treu and Vardha N. Bennert and Roberto J. Assef and Anna Pancoast},
journal= {arXiv preprint arXiv:1703.09867},
year = {2017}
}
Comments
Accepted for publication in ApJ