We review observations and gravitational lensing theory related to the magnification of background QSOs by intervening overdensities, and the induced cross-correlation between sources and foreground galaxies. We pay special attention to simulations, and present some preliminary results from high resolution cluster simulations, which show the role of the halo core and substructure on non-linear magnification. For massive clusters, deviations from the weak gravitational lensing regime are significant on arcmin scales and bellow. The accumulated knowledge in the field already shows that gravitational lensing magnification is an important astrophysical and cosmological tool
We use the halo model formulation of Takada & Jain (2003) to compute the correlation function of len...
Wide-separation lensed QSOs measure the mass function and evolution of massive galaxy clusters, in a...
We calculate the angular cross-correlation function between background QSOs and foreground galaxies ...
We report a detection of galaxy-QSO cross-correlation w_{GQ} in the Sloan Digital Sky Survey (SDSS) ...
We use the 2dF QSO Redshift Survey, to investigate whether QSOs are detectably gravitationally lense...
The angular two-point correlation function between background QSOs and foreground galaxies induced b...
We calculate the angular cross-correlation function between background QSOs and foreground galaxies ...
Image flux ratio anomalies have been attributed to substructures within the gravitational lens and t...
Images of highly luminous QSOs are analyzed to determine whether the gravitational magnification of ...
High-redshift galaxies and quasi-stellar objects (QSOs) are most likely to be strongly lensed by int...
Abstract The amplification caused by gravitational light bending by compact objects in a foreground ...
Galactic-sized gravitational lenses are simulated by combining a cosmological N-body simulation and ...
Gravitational lensing predicts an enhancement of the density of bright, distant QSOs around foregrou...
We present an 8 sigma detection of cosmic magnification measured by the variation of quasar density ...
10 pages, 7 figuresGalaxy-galaxy or galaxy-quasar lensing can provide important information on the m...
We use the halo model formulation of Takada & Jain (2003) to compute the correlation function of len...
Wide-separation lensed QSOs measure the mass function and evolution of massive galaxy clusters, in a...
We calculate the angular cross-correlation function between background QSOs and foreground galaxies ...
We report a detection of galaxy-QSO cross-correlation w_{GQ} in the Sloan Digital Sky Survey (SDSS) ...
We use the 2dF QSO Redshift Survey, to investigate whether QSOs are detectably gravitationally lense...
The angular two-point correlation function between background QSOs and foreground galaxies induced b...
We calculate the angular cross-correlation function between background QSOs and foreground galaxies ...
Image flux ratio anomalies have been attributed to substructures within the gravitational lens and t...
Images of highly luminous QSOs are analyzed to determine whether the gravitational magnification of ...
High-redshift galaxies and quasi-stellar objects (QSOs) are most likely to be strongly lensed by int...
Abstract The amplification caused by gravitational light bending by compact objects in a foreground ...
Galactic-sized gravitational lenses are simulated by combining a cosmological N-body simulation and ...
Gravitational lensing predicts an enhancement of the density of bright, distant QSOs around foregrou...
We present an 8 sigma detection of cosmic magnification measured by the variation of quasar density ...
10 pages, 7 figuresGalaxy-galaxy or galaxy-quasar lensing can provide important information on the m...
We use the halo model formulation of Takada & Jain (2003) to compute the correlation function of len...
Wide-separation lensed QSOs measure the mass function and evolution of massive galaxy clusters, in a...
We calculate the angular cross-correlation function between background QSOs and foreground galaxies ...