Photometric Reverberation Mapping of the Broad Emission Line Region in Quasars
arXiv:1105.5312 · doi:10.1088/0004-637X/747/1/62
Abstract
A method is proposed for measuring the size of the broad emission line region (BLR) in quasars using broadband photometric data. A feasibility study, based on numerical simulations, points to the advantages and pitfalls associated with this approach. The method is applied to a subset of the Palomar-Green quasar sample for which independent BLR size measurements are available. An agreement is found between the results of the photometric method and the spectroscopic reverberation mapping technique. Implications for the measurement of BLR sizes and black hole masses for numerous quasars in the era of large surveys are discussed.
19 pages, 17 figures; published version
References in corpus (6)
- Modeling the Time Variability of SDSS Stripe 82 Quasars as a Damped Random Walk
- Cosmic Evolution of Black Holes and Spheroids. III. The M-sigma relation in the last six billion years
- Broad-Line Reverberation in the Kepler-Field Seyfert Galaxy Zw 229-015
- Spectral variability of quasars from multi-epoch photometric data in the Sloan Digital Sky Survey Stripe 82
- Quasar optical variability: searching for interband time delays
- The Correlation Between Spectral Index And Accretion Rate For AGN
Cited by in corpus (32)
- The Sloan Digital Sky Survey Reverberation Mapping Project: Technical Overview
- Application of Stochastic Modeling to Analysis of Photometric Reverberation Mapping Data
- Examining AGN UV/optical Variability Beyond the Simple Damped Random Walk
- Broad Band Photometric Reverberation Mapping of NGC 4395
- Photometric reverberation mapping of 3C120
- Cosmology with AGN dust time lags -- Simulating the new VEILS survey
- The broad-line region and dust torus size of the Seyfert 1 galaxy PGC50427
- Quasar Cartography: from Black Hole to Broad Line Region Scales
- Broad-line region structure and line profile variations in the changing look AGN HE1136-2304
- Size and disk-like shape of the broad-line region of ESO399-IG20
- The LSST era of supermassive black holes accretion-disk reverberation mapping
- Methods of Reverberation Mapping. I. Time-lag Determination by Measures of Randomness
- Dust reverberation mapping in the era of big optical surveys and its cosmological application
- The Case for Standard Irradiated Accretion Disks in Active Galactic Nuclei
- Modelling photometric reverberation data -- a disk-like broad-line region and a potentially larger black hole mass for 3C120
- Partial covering of emission regions of Q 0528-250 by intervening H clouds
- Modeling photometric reverberation mapping data for the next generation of big data surveys. Quasar accretion disks sizes with the LSST
- Measurement of The Broad Line Region Size in a Luminous MACHO Quasar
- Imprints of the quasar structure in time-delay light curves: Microlensing-aided reverberation mapping
- Blazar variability with the Vera C. Rubin Legacy Survey of Space and Time (LSST)
- Automatized photometric monitoring of active galactic nuclei with the 46 cm telescope of the Wise observatory
- On possible proxies of AGN light curves cadence selection in future time domain surveys
- Reverberation Mapping with Intermediate-Band Photometry: Detection of Broad-Line H Time Lags for Quasars at
- On the Performance of Quasar Reverberation Mapping in the Era of Time-Domain Photometric Surveys
- Estimating Black Hole Masses in Hundreds of Quasars
- Medium-band Photometry Reverberation Mapping of Nearby Active Galactic Nuclei
- More Evidence for the Intermediate Broad Line Region of the Mapped AGN PG 0052+251
- Photoreverberation mapping of quasars in the context of LSST observing strategies
- Composite reverberation mapping
- The Performance of Photometric Reverberation Mapping at High Redshift and the Reliability of Damped Random Walk Models
- Effect of a partial coverage of quasar broad-line regions by intervening H-bearing clouds
- A novel approach to study the variability of NGC 5548