The Structure of HE 1104-1805 from Infrared to X-Ray
arXiv:1304.1620 · doi:10.1088/0004-637X/798/2/95
Abstract
The gravitationally lensed quasar HE 1104-1805 has been observed at a variety of wavelengths ranging from the mid-infrared to X-ray for nearly 20 years. We combine flux ratios from the literature, including recent Chandra data, with new observations from the SMARTS telescope and HST, and use them to investigate the spatial structure of the central regions using a Bayesian Monte Carlo analysis of the microlensing variability. The wide wavelength coverage allows us to constrain not only the accretion disk half-light radius r_1/2, but the power-law slope ξ of the size-wavelength relation r_1/2 ~ λ^ξ. With a logarithmic prior on the source size, the (observed-frame) R-band half-light radius log(r_1/2/cm) is 16.0+0.3-0.4, and the slope ξ is 1.0+0.30-0.56. We put upper limits on the source size in soft (0.4-1.2 keV) and hard (1.2-8 keV) X-ray bands, finding 95% upper limits on log (r_1/2/cm) of 15.33 in both bands. A linear prior yields somewhat larger sizes, particularly in the X-ray bands. For comparison, the gravitational radius, using a black hole mass estimated using the Hβ line, is log(r_g/cm) = 13.94. We find that the accretion disk is probably close to face-on, with cos i = 1.0 being four times more likely than cos i = 0.5. We also find probability distributions for the mean mass of the stars in the foreground lensing galaxy, the direction of the transverse peculiar velocity of the lens, and the position angle of the projected accretion disk's major axis (if not face-on).
10 pages, 10 figures, 2 tables. Submitted to ApJ
References in corpus (14)
- Sizes and Temperature Profiles of Quasar Accretion Disks from Chromatic Microlensing
- Quasar Accretion Disks Are Strongly Inhomogeneous
- The Spatial Structure of An Accretion Disk
- The Structure of the X-ray and Optical Emitting Regions of the Lensed Quasar Q 2237+0305
- Microlensing variability in the gravitationally lensed quasar QSO 2237+0305 = the Einstein Cross. II. Energy profile of the accretion disk
- Further Evidence that Quasar X-Ray Emitting Regions Are Compact: X-Ray and Optical Microlensing in the Lensed Quasar Q J0158-4325
- The multiple quasar Q2237+0305 under a microlensing caustic
- A microlensing study of the accretion disc in the quasar MG 0414+0534
- A Strong X-Ray Flux Ratio Anomaly in the Quadruply Lensed Quasar PG 1115+080
- A Study of Gravitational Lens Chromaticity using Ground-based Narrow Band Photometry
- Simultaneous Estimation of Time Delays and Quasar Structure
- Microlensing of an extended source by a power-law mass distribution
- The Effect of a Time-Varying Accretion Disk Size on Quasar Microlensing Light Curves
- Effects of Kerr Strong Gravity on Quasar X-ray Microlensing
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