Spectroscopy and polarimetry of the gravitationally lensed quasar Q0957+561
arXiv:2101.07154 · doi:10.1051/0004-6361/202039914
Abstract
We present new spectroscopic and polarimetric observations of the first discovered gravitational lens Q0957+561 obtained with the 6m telescope of the Special Astrophysical Observatory (SAO, Russia). We explore spectropolarimetric parameters of Q0957+561 A,B components to investigate the innermost structure of the quasar, and explore the nature of polarization in lensed quasars. Additionally, we compare their present-day spectral characteristics with previous observations in order to study long-term spectral changes. We analyze spectral characteristics of lensed quasar comparing spectra of A and B images, as well as comparing previously observed image spectra with present-day ones. The polarization parameters of A-B images are compared. We also model the macro-lens influence on the polarization of the images representing the gravitational lens with a singular isothermal elliptical potential. We find that the brightness and SED ratio of components A and B changed during a long period. Polarization in broad lines of components A and B showed that the equatorial scattering cannot be detected in this quasar. We find wavelength-dependent polarization that may be explained as a combination of the polarization from the disc and outflowing material. There is a significant difference between polarization parameters of the A and B images: the B component shows a higher polarization degree and polarization angle. However, both polarization vectors are nearly perpendicular to the observed radio jet projection. It indicates that the polarization in the continuum is coming from the accretion disc. Our simple lensing model of a polarized source showed that macro-lens can cause the observed differences in polarization parameters of Q0957+561 A,B images. Using Mg II broad line and luminosity of component A we estimated that the Q0957+561 black hole mass is M~(4.8-6.1) M
accepted in AA
References in corpus (19)
- Sizes and Temperature Profiles of Quasar Accretion Disks from Chromatic Microlensing
- Multi-wavelength study of the gravitational lens system RXS J1131-1231: III. Long slit spectroscopy: micro-lensing probes the QSO structure
- The structure of the Mg II broad line emitting region in Type 1 AGNs
- Time-delay measurement of MgII broad line response for the highly-accreting quasar HE 0413-4031: Implications for the MgII-based radius-luminosity relation
- Microlensing of a Biconical Broad Line Region
- Quasar Microlensing Variability Studies Favor Shallow Accretion Disk Temperature Profiles
- Polarization in lines - a new method for measuring black hole masses in active galaxies
- New two-colour light curves of Q0957+561: time delays and the origin of intrinsic variations
- Microlensing of the X-ray, UV and optical emission regions of quasars: Simulations of the time-scales and amplitude variations of microlensing events
- Size of the accretion disk in the gravitationally lensed quasar SDSS J1004+4112 from the statistics of microlensing magnifications
- 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
- Spectropolarimetric monitoring of active galaxy 3C390.3 with 6m telescope SAO RAS in the period 2009-2014
- Estimating supermassive black hole masses in AGNs using polarization of broad MgII, H and H lines
- Revealing the nonlinear behaviour of the lensed quasar Q0957+561
- Resolving the Structure at the Heart of BAL Quasars Through Microlensing Induced Polarisation Variability
- Structure function of the UV variability of Q0957+561
- New constraints on quasar broad absorption and emission line regions from gravitational microlensing
- The Central Component of Gravitational Lens Q0957+561