The Broad Line Region and Black Hole Mass of NGC 4151
arXiv:2206.03513 · doi:10.3847/1538-4357/ac7c0a
Abstract
We present a reanalysis of reverberation-mapping data from 2005 for the Seyfert galaxy NGC 4151, supplemented with additional data from the literature to constrain the continuum variations over a significantly longer baseline than the original monitoring program. Modeling of the continuum light curve and the velocity-resolved variations across the H emission line constrains the geometry and kinematics of the broad line region (BLR). The BLR is well described by a very thick disk with similar opening angle () and inclination angle (), suggesting that our sight line towards the innermost central engine skims just above the surface of the BLR. The inclination is consistent with constraints from geometric modeling of the narrow line region, and the similarity between the inclination and opening angles is intriguing given previous studies of NGC 4151 that suggest BLR gas has been observed temporarily eclipsing the X-ray source. The BLR kinematics are dominated by eccentric bound orbits, with % of the orbits preferring near-circular motions. With the BLR geometry and kinematics constrained, the models provide an independent and direct black hole mass measurement of or , which is in good agreement with mass measurements from stellar dynamical modeling and gas dynamical modeling. NGC 4151 is one of the few nearby broad-lined Seyferts where the black hole mass may be measured via multiple independent techniques, and it provides an important test case for investigating potential systematics that could affect the black hole mass scales used in the local Universe and for high-redshift quasars.
13 pages, 6 figures, 2 tables; submitted to ApJ and revised based on referee comments
References in corpus (24)
- First M87 Event Horizon Telescope Results. VI. The Shadow and Mass of the Central Black Hole
- A Catalog of Quasar Properties from SDSS DR7
- Evolutionary Stellar Population Synthesis with MILES. Part I: The Base Models and a New Line Index System
- Reverberation Measurements of the Inner Radius of the Dust Torus in 17 Seyfert Galaxies
- Reverberation mapping of Active Galactic Nuclei: from X-ray corona to dusty torus
- A Reverberation-Based Mass for the Central Black Hole in NGC 4151
- The Mass of the Black Hole in the Seyfert 1 Galaxy NGC 4593 from Reverberation Mapping
- Modeling reverberation mapping data I: improved geometric and dynamical models and comparison with cross-correlation results
- Rapid N_H changes in NGC 4151
- Circumnuclear Gas in Seyfert 1 Galaxies: Morphology, Kinematics, and Direct Measurement of Black Hole Masses
- The spatially resolved broad line region of IRAS 09149-6206
- The central parsec of NGC 3783: a rotating broad emission line region, asymmetric hot dust structure, and compact coronal line region
- First Results from the Lick AGN Monitoring Project: The Mass of the Black Hole in Arp 151
- The Black Hole Mass of NGC 4151. II. Stellar Dynamical Measurement from Near-Infrared Integral Field Spectroscopy
- CIV Black Hole Mass Measurements with the Australian Dark Energy Survey (OzDES)
- The Cepheid Distance to the Seyfert 1 Galaxy NGC 4151
- Space Telescope and Optical Reverberation Mapping Project. XII. Broad-Line Region Modeling of NGC 5548
- The Lick AGN Monitoring Project 2016: Dynamical Modeling of Velocity-Resolved H\b{eta} Lags in Luminous Seyfert Galaxies
- Do Reverberation Mapping Analyses Provide an Accurate Picture of the Broad Line Region?
- The Black Hole Mass of NGC 4151 from Stellar Dynamical Modeling
- The black hole mass of the multiply imaged quasar SDSS J2222+2745 from velocity-resolved time lags of the CIV emission line
- Dynamical Modeling of the CIV Broad Line Region of the Multiply Imaged Quasar SDSS J2222+2745
- TLDR: Time Lag/Delay Reconstructor
- A Detailed View of the Broad Line Region in NGC 3783 from Velocity-Resolved Reverberation Mapping