The influence of gravitational microlensing on the X-ray spectral line profiles originated from a relativistic accretion disc has been studied. Using a disc model, we show that microlensing can induce noticeable changes in the line shapes when the Einstein ring radius associated with the microlens is of a size comparable to that of the accretion disc. Taking into account the relatively small size of the X-ray accretion disc, we found that compact objects (of about a Solar mass) which belong to the bulge of the host galaxy can produce significant changes in the X-ray line profile of AGN
Gravitational microlensing is a powerful tool allowing one to unveil the structure of quasars on sub...
We examine the effect that the shape of the source brightness profile has on the magnitude fluctuati...
Aims. We study the half-light radius versus black hole mass as well as the luminosity versus black h...
We study the influence of gravitational microlensing on the spectral line profiles originating from ...
We study the influence of gravitational microlensing on the AGN Fe K-alpha line confirming that unex...
We study the influence of gravitational microlensing on the AGN Fe Kα line confirming that unexpecte...
We consider the contribution of microlensing to the AGN Fe K$\alpha$ line and X-ray continuum amplif...
The observed enhancement of the Fe K$\alpha$ line in three gravitationally lensed QSOs (MG J0414+053...
We discuss the effects of microlensing on the broad emission lines (BELs) of QSOs in the light of re...
Quasar microlensing is a relatively newly explored phenomenon, which is ideally suited for studying ...
Microlensing is a powerful technique which can be used to study the continuum and the broad line em...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
Recent studies have shown that line profile distortions are commonly observed in gravitationally len...
When we observe a~distant quasar through an intervening galaxy we may see a~number of observable ima...
Gravitational microlensing is a powerful tool allowing one to unveil the structure of quasars on sub...
We examine the effect that the shape of the source brightness profile has on the magnitude fluctuati...
Aims. We study the half-light radius versus black hole mass as well as the luminosity versus black h...
We study the influence of gravitational microlensing on the spectral line profiles originating from ...
We study the influence of gravitational microlensing on the AGN Fe K-alpha line confirming that unex...
We study the influence of gravitational microlensing on the AGN Fe Kα line confirming that unexpecte...
We consider the contribution of microlensing to the AGN Fe K$\alpha$ line and X-ray continuum amplif...
The observed enhancement of the Fe K$\alpha$ line in three gravitationally lensed QSOs (MG J0414+053...
We discuss the effects of microlensing on the broad emission lines (BELs) of QSOs in the light of re...
Quasar microlensing is a relatively newly explored phenomenon, which is ideally suited for studying ...
Microlensing is a powerful technique which can be used to study the continuum and the broad line em...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
Recent studies have shown that line profile distortions are commonly observed in gravitationally len...
When we observe a~distant quasar through an intervening galaxy we may see a~number of observable ima...
Gravitational microlensing is a powerful tool allowing one to unveil the structure of quasars on sub...
We examine the effect that the shape of the source brightness profile has on the magnitude fluctuati...
Aims. We study the half-light radius versus black hole mass as well as the luminosity versus black h...