The BH mass of nearby QSOs: a comparison of the bulge luminosity and virial methods
arXiv:astro-ph/0609185 · doi:10.1111/j.1365-2966.2006.10878.x
Abstract
We report on the analysis of the photometric and spectroscopic properties of a sample of 29 low redshift (z<0.6) QSOs for which both HST WFPC2 images and ultraviolet HST FOS spectra are available. For each object we measure the R band absolute magnitude of the host galaxy, the CIV (1550A) line width and the 1350A continuum luminosity. From these quantities we can estimate the black hole (BH) mass through the M(BH)-L(bulge) relation for inactive galaxies, and from the virial method based on the kinematics of the regions emitting the broad lines. The comparison of the masses derived from the two methods yields information on the geometry of the gas emitting regions bound to the massive BH. The cumulative distribution of the line widths is consistent with that produced by matter laying in planes with inclinations uniformly distributed between 10 and 50 deg, which corresponds to a geometrical factor f=1.3. Our results are compared with those of the literature and discussed within the unified model of AGN.
10 pages, 6 figures. To appear in MNRAS
References in corpus (1)
Cited by in corpus (8)
- Are the black hole masses in Narrow Line Seyfert 1 galaxies actually small?
- On the geometry of broad emission region in quasars
- Integral Field Spectroscopy of the Extended Emission-Line Region of 4C 37.43
- Near-infrared adaptive optics imaging of high redshift quasars
- A Common Origin for Quasar Extended Emission-Line Regions and Their Broad-Line Regions
- The Host Galaxy and The Extended Emission-Line Region of The Radio Galaxy 3C 79
- The NIR to UV continuum of radio loud vs. radio quiet quasars
- The Velocity Field of Quasar Broad Emission Line Gas