Revealing the structure of the lensed quasar Q 0957+561 III. Constraints on the size of the broad-line region
arXiv:2307.02914 · doi:10.1051/0004-6361/202140975
Abstract
Our aim is to examine the size, kinematics, and geometry of the broad-line region (BLR) in the double-lensed quasar Q 0957+561 by analyzing the impact of microlensing on various rest-frame ultraviolet broad-emission lines (BELs). We explore the influence of intrinsic variability and microlensing on the C IV, C III], and Mg II emission lines through multiple spectroscopic observations taken between April 1999 and January 2017. By utilizing the line cores as a reference for no microlensing and correcting for the long time delay between the images, we estimate the sizes of the regions emitting the broad-line wings using a Bayesian approach. Our study of the microlensing amplitudes between the lensed images of the quasar Q 0957+561 reveals differing sizes of the regions emitting the three prominent BELs C IV, C III], and Mg II. The strength of the differential microlensing indicates that the high-ionization line C IV arises from a compact inner region of the BLR with a half-light radius of lt-days, which represents a lower limit on the overall size of the BLR and is comparable to the size of the region emitting the r-band continuum in this system. A somewhat larger size of lt-days is obtained for the semi-forbidden line C III]. Microlensing has a weak impact on the lower-ionization line Mg II, which is emitted from a region with a half-light radius of lt-days. These findings suggest that the BEL regions may have distinct geometries and kinematics, with the more extended ones being spherically symmetric, and the most compact ones being nonspherical, with motions likely confined to a plane.
References in corpus (18)
- Microlensing Makes Lensed Quasar Time Delays Significantly Time Variable
- The Sloan Digital Sky Survey Reverberation Mapping Project: MgII Lag Results from Four Years of Monitoring
- A Study of Gravitational Lens Chromaticity using Ground-based Narrow Band Photometry
- Constraints on interacting dark energy models from time-delay cosmography with seven lensed quasars
- New two-colour light curves of Q0957+561: time delays and the origin of intrinsic variations
- Revising the Hubble constant, spatial curvature and dark energy dynamics with the latest observations of quasars
- A Microlensing Accretion Disk Size Measurement in the Lensed Quasar WFI 2026-4536
- Size of the accretion disk in the gravitationally lensed quasar SDSS J1004+4112 from the statistics of microlensing magnifications
- Microlensing of the broad emission lines in 27 gravitationally lensed quasars. Broad line region structure and kinematics
- New strong lensing modelling of SDSS J2222+2745 enhanced with VLT/MUSE spectroscopy
- Fast Multipole Method for Gravitational Lensing. Application to High Magnification Quasar Microlensing
- Near infrared and optical continuum emission region size measurements in the gravitationally lensed quasars Q0957+561 and SBS0909+532
- Revealing the structure of the lensed quasar Q 0957+561: I. Accretion disk size
- A Mass Model for the Lensing Cluster SDSS J1004+4112: Constraints From the Third Time Delay
- Microlensing Analysis for the gravitational lens systems SDSS0924+0219, Q1355-2257, and SDSS1029+2623
- Peculiar Transverse Velocities of Galaxies from Quasar Microlensing. Tentative Estimate of the Peculiar Velocity Dispersion at
- Chromatic Microlensing Time Delays
- Revealing the structure of the lensed quasar Q 0957+561: III. SMBH mass via gravitational redshift