Microlensing of the broad emission line region in the lensed quasar J1004+4112
arXiv:2302.11930 · doi:10.1051/0004-6361/202245490
Abstract
J1004+4112 is a lensed quasar for which the first broad emission line profile deformations due to microlensing were identified. Detailed interpretations of these features have nevertheless remained controversial. Based on 15 spectra obtained from 2003 to 2018, we revisit the microlensing effect that distorts the CIV broad emission line profile. We show that the microlensing-induced line profile distortions in image A, although variable, are remarkably similar over a period of 15 years. They are characterized by a strong magnification of the blue part of the line profile, a strong demagnification of the red part of the line profile, and a small-to-negligible demagnification of the line core. We used the microlensing effect to constrain the broad emission-line region (BLR) size, geometry, and kinematics. For this purpose, we modeled the deformation of the emission lines considering three simple, representative BLR models: a Keplerian disk, an equatorial wind, and a biconical polar wind, with various inclinations with respect to the line of sight. We find that the observed magnification profile of the CIV emission line can be reproduced with the simple BLR models we considered, without the need for more complex BLR features. The magnification appears dominated by the position of the BLR with respect to the caustic network -- and not by the velocity-dependent size of the BLR. The favored models for the CIV BLR are either the Keplerian disk or the equatorial wind, depending on the orientation of the BLR axis with respect to the caustic network. We also find that the polar wind model can be discarded. We measured the CIV BLR half-light radius as light-days. This value is smaller than the BLR radius expected from the radius-luminosity relation derived from reverberation mapping, but it is still in reasonable agreement given the large uncertainties.
Accepted for publication in Astronomy & Astrophysics
References in corpus (15)
- Spectral properties of quasars from Sloan Digital Sky Survey data release 14: The catalog
- Correcting CIV-Based Virial Black Hole Masses
- Are the black hole masses in Narrow Line Seyfert 1 galaxies actually small?
- The Rewards of Patience: An 822 Day Time Delay in the Gravitational Lens SDSS J1004+4112
- A Study of Gravitational Lens Chromaticity using Ground-based Narrow Band Photometry
- Microlensing of a Biconical Broad Line Region
- Lens-Aided Multi-Angle Spectroscopy (LAMAS) Reveals Small-Scale Outflow Structure in Quasars
- Strange magnification pattern in the large separation lens SDSS J1004+4112 from optical to X-rays
- Size of the accretion disk in the gravitationally lensed quasar SDSS J1004+4112 from the statistics of microlensing magnifications
- Recurrence of the blue wing enhancements in the high ionization lines of SDSS 1004+4112 A
- The Longest Delay: a 14.5 Yr Campaign to Determine the Third Time Delay in the Lensing Cluster SDSS~J1004+4112
- Extended X-ray Monitoring of Gravitational Lenses with Chandra and Joint Constraints on X-ray Emission Regions
- Constraining the geometry and kinematics of the quasar broad emission line region using gravitational microlensing. I. Models and simulations
- Spectroscopy and polarimetry of the gravitationally lensed quasar SDSS J1004+4112 with the 6m SAO RAS telescope
- A Mass Model for the Lensing Cluster SDSS J1004+4112: Constraints From the Third Time Delay