Assessing indirect methods to determine black hole masses using NGC 4151
arXiv:2303.03968 · doi:10.1093/mnras/stad718
Abstract
Accurately determining the black hole mass () in active galactic nuclei (AGN) is crucial to constraining their properties and to studying their evolution. While direct methods yield reliable measurements of in unobscured type 1 AGN, where the dynamics of stellar or gas components can be directly observed, only indirect methods can be applied to the vast majority of heavily absorbed type 2 AGN, which represent most of the AGN population. Since it is difficult to evaluate the accuracy and precision of these indirect methods, we utilize the nearby X-ray bright Seyfert galaxy NGC 4151, whose has been tightly constrained with several independent direct methods, as a laboratory to assess the reliability of three indirect methods that have been applied to obscured AGN. All three, the X-ray scaling method, the fundamental plane of black hole activity, and the M- correlation, yield values consistent with those inferred from direct methods and can therefore be considered accurate. However, only the X-ray scaling method and the M- correlation are precise because the substantial scatter in the fundamental plane of BH activity allows only for crude estimates. Of the four M- correlations we used, only the one from Kormendy and Ho yields a value consistent with the dynamical estimates. This study suggests that the best approach to estimating the black hole mass in systems where direct dynamical methods cannot be applied is to utilize a combination of indirect methods, taking into account their different ranges of applicability.
Accepted for publication in the Monthly Notices of the Royal Astronomical Society
References in corpus (13)
- The Hard X-ray Spectrum as a Probe for Black-Hole Growth in Radio-Quiet Active Galactic Nuclei
- The black hole mass - stellar velocity dispersion relation of narrow-line Seyfert 1 galaxies
- A Reverberation-Based Mass for the Central Black Hole in NGC 4151
- Accretion states and radio loudness in Active Galactic Nuclei: analogies with X-ray binaries
- Circumnuclear Gas in Seyfert 1 Galaxies: Morphology, Kinematics, and Direct Measurement of Black Hole Masses
- The Fundamental Plane of Black Hole Accretion and its Use as a Black Hole-Mass Estimator
- The Black Hole Mass of NGC 4151. II. Stellar Dynamical Measurement from Near-Infrared Integral Field Spectroscopy
- A new fundamental plane for radiatively efficient black-hole sources
- Fundamental Reference AGN Monitoring Experiment (FRAMEx) I: Jumping Out of the Plane with the VLBA
- The Black Hole Mass of NGC 4151 from Stellar Dynamical Modeling
- Detection of faint broad emission lines in type 2 AGN: III. On the relation of type 2 AGN
- Constraining black hole masses in low-accreting AGN using X-ray spectra
- Estimating black hole masses in obscured AGN using X-rays