Quasar Microlensing Variability Studies Favor Shallow Accretion Disk Temperature Profiles
arXiv:2006.07243 · doi:10.3847/1538-4357/ab8aed
Abstract
We compare the microlensing-based continuum emission region size measurements in a sample of 15 gravitationally lensed quasars with estimates of luminosity-based thin disk sizes to constrain the temperature profile of the quasar continuum accretion region. If we adopt the standard thin disk model, we find a significant discrepancy between sizes estimated using the luminosity and those measured by microlensing of . If quasar continuum sources are simple, optically thick accretion disks with a generalized temperature profile , the discrepancy between the microlensing measurements and the luminosity-based size estimates can be resolved by a temperature profile slope at confidence. This is shallower than the standard thin disk model () at significance. We consider alternate accretion disk models that could produce such a temperature profile and reproduce the empirical continuum size scaling with black hole mass, including disk winds or disks with non-blackbody atmospheres.
11 pages, 5 figures
References in corpus (20)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Wind from the black-hole accretion disk driving a molecular outflow in an active galaxy
- Space Telescope and Optical Reverberation Mapping Project. II. Swift and HST Reverberation Mapping of the Accretion Disk of NGC 5548
- Testing thermal reprocessing in AGN accretion discs
- Sizes and Temperature Profiles of Quasar Accretion Disks from Chromatic Microlensing
- Quasar Accretion Disks Are Strongly Inhomogeneous
- Microlensing variability in the gravitationally lensed quasar QSO 2237+0305 = the Einstein Cross. II. Energy profile of the accretion disk
- X-Ray and Optical Microlensing in the Lensed Quasar PG 1115+080
- The UV Continuum of Quasars: Models and SDSS Spectral Slopes
- Multi-wavelength study of the gravitational lens system RXS J1131-1231: III. Long slit spectroscopy: micro-lensing probes the QSO structure
- A microlensing study of the accretion disc in the quasar MG 0414+0534
- Detection of Time Lags Between Quasar Continuum Emission Bands based on Pan-STARRS Light-curves
- A Consistent Picture Emerges: A Compact X-ray Continuum Emission Region in the Gravitationally Lensed Quasar SDSS J0924+0219
- Measuring the Innermost Stable Circular Orbits of Supermassive Black Holes
- A Study of Gravitational Lens Chromaticity using Ground-based Narrow Band Photometry
- Accretion Disk Size Measurement and Time Delays in the Lensed Quasar WFI 2033-4723
- Microlensing of an extended source by a power-law mass distribution
- Probing the Broad Line Region and the Accretion Disk in the Lensed Quasars HE0435-1223, WFI2033-4723, and HE2149-2745 using Gravitational Microlensing
- Strong Chromatic Microlensing in HE0047-1756 and SDSS1155+6346
- Constraining Quasar Relativistic Reflection Regions and Spins with Microlensing