Resolving the Inner Structure of QSO Discs by Fold Caustic Crossing Events
arXiv:1203.2656 · doi:10.1111/j.1365-2966.2012.20904.x
Abstract
Though the bulk of the observed optical flux from the discs of intermediate-redshift lensed quasars is formed well outside the region of strong relativistic boosting and light-bending, relativistic effects have important influence on microlensing curves. The reason is in the divergent nature of amplification factors near fold caustics increasingly sensitive to small spatial size details. Higher-order disc images produced by strong light bending around the black hole may affect the amplification curves, making a contribution of up to several percent near maximum amplification. In accordance with theoretical predictions, some of the observed high-amplification events possess fine structure. Here we consider three putative caustic crossing events, one by SBS1520+530 and two events for individual images of the Einstein's cross (QSO J2237+0305). Using relativistic disc models allows to improve the fits, but the required inclinations are high, about 70deg or larger. Such high inclinations apparently contradict the absence of any strong absorption that is likely to arise if a disc is observed edge-on through a dust torus. Still, the high inclinations are required only for the central parts of the disc, that allows the disc itself to be initially tilted by 60-90deg with respect to the black hole and aligned toward the black hole equatorial plane near the last stable orbit radius. For SBS1520+530, an alternative explanation for the observed amplification curve is a superposition of two subsequent fold caustic crossings. While relativistic disc models favour black hole masses ~10^10 solar (several times higher than the virial estimates) or small Eddington ratios, this model is consistent with the observed distribution of galaxies over peculiar velocities only if the black hole mass is about 3 10^8 solar.
19 pages, 16 figures, 3 tables; accepted to MNRAS; small proof corrections made
References in corpus (15)
- A Substantial Population of Low Mass Stars in Luminous Elliptical Galaxies
- Sizes and Temperature Profiles of Quasar Accretion Disks from Chromatic Microlensing
- Microlensing variability in the gravitationally lensed quasar QSO 2237+0305 = the Einstein Cross. II. Energy profile of the accretion disk
- A microlensing study of the accretion disc in the quasar MG 0414+0534
- Gravitational Microlensing
- Observational Signatures of Tilted Black Hole Accretion Disks from Simulations
- Microlensing variability in the gravitationally lensed quasar Q2237+0305 = the Einstein Cross, I. Spectrophotometric monitoring with the VLT
- A microlensing measurement of dark matter fractions in three lensing galaxies
- Lens Galaxy Properties of SBS1520+530: Insights from Keck Spectroscopy and AO Imaging
- Discovery of Energy Dependent X-ray Microlensing in Q2237+0305
- A New Microlensing Event in the Doubly-Imaged Quasar Q0957+561
- The Optical Gravitational Lensing Experiment. OGLE-III Long Term Monitoring of the Gravitational Lens QSO 2237+0305
- A fully relativistic twisted disk around a slowly rotating Kerr black hole: derivation of dynamical equations and the shape of stationary configurations
- Is there a caustic crossing in the lensed quasar Q2237+0305 observational data record?
- X-ray microlensing in the quadruply lensed quasar Q2237+0305
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- Effects of Kerr Strong Gravity on Quasar X-ray Microlensing
- Microlensing Evidence for Super-Eddington Disc Accretion in Quasars
- Inclination-Dependent AGN Flux Profiles From Strong Lensing of the Kerr Space-Time
- Liverpool-Maidanak monitoring of the Einstein Cross in 20062019. I. Light curves in the optical bands and microlensing signatures
- Resolving the Vicinity of Supermassive Black Holes with Gravitational Microlensing
- On the Eddington limit for relativistic accretion discs
- Simulations of the Fe K-alpha Energy Spectra from Gravitationally Microlensed Quasars
- X-Ray Line Profile Variations during Quasar Microlensing
- Magnifications of paired micro-images emerging from a micro-lensing critical curve
- Amoeba: An AGN Model of Optical Emissions Beyond steady-state Accretion discs
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