Constraining the geometry and kinematics of the quasar broad emission line region using gravitational microlensing. I. Models and simulations
arXiv:1707.09159 · doi:10.1051/0004-6361/201731086
Abstract
Recent studies have shown that line profile distortions are commonly observed in gravitationally lensed quasar spectra. We investigate the effect of gravitational microlensing on quasar broad emission line profiles and their underlying continuum, combining the emission from simple representative BLR models with generic microlensing magnification maps. Specifically, we considered Keplerian disk, polar, and equatorial wind BLR models of various sizes. The effect of microlensing has been quantified with four observables: , the total magnification of the broad emission line; , the magnification of the underlying continuum; as well as red/blue, RBI and wings/core, WCI, indices that characterize the line profile distortions. The simulations showed that distortions of line profiles, such as those recently observed in lensed quasars, can indeed be reproduced and attributed to the differential effect of microlensing on spatially separated regions of the BLR. While the magnification of the emission line sets an upper limit on the BLR size and, similarly, the magnification of the continuum sets an upper limit on the size of the continuum source, the line profile distortions mainly depend on the BLR geometry and kinematics. We thus built (WCI,RBI) diagrams that can serve as diagnostic diagrams to discriminate between the various BLR models on the basis of quantitative measurements. It appears that a strong microlensing effect puts important constraints on the size of the BLR and on its distance to the high-magnification caustic. In that case, BLR models with different geometries and kinematics are more prone to produce distinctive line profile distortions for a limited number of caustic configurations, which facilitates their discrimination.
Accepted for publication in Astronomy and Astrophysics
References in corpus (4)
- 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
- Microlensing of the broad-line region in the quadruply imaged quasar HE0435-1223
- Microlensing of a Biconical Broad Line Region
Cited by in corpus (11)
- Gaia GraL: Gaia DR2 Gravitational Lens Systems. VI. Spectroscopic Confirmation and Modeling of Quadruply-Imaged Lensed Quasars
- Spectroscopy and polarimetry of the gravitationally lensed quasar SDSS J1004+4112 with the 6m SAO RAS telescope
- Microlensing of the broad emission line region in the lensed quasar J1004+4112
- Spectroscopy and polarimetry of the gravitationally lensed quasar Q0957+561
- New constraints on quasar broad absorption and emission line regions from gravitational microlensing
- Towards modelling Ghostly DLAs
- Size and kinematics of the CIV broad emission line region from microlensing-induced line profile distortions in two gravitationally lensed quasars
- A novel approach to study the variability of NGC 5548
- Multifractality Signatures in Lensed Quasars
- Flavor Matters, but Matter Flavors: Matter Effects on Flavor Composition of Astrophysical Neutrinos
- Geometry and kinematics of the broad emission line region in the lensed quasar Q2237+0305