The combination of strong gravitational lensing and stellar kinematics provides a powerful and robust method to investigate the mass and dynamical structure of early-type galaxies. We demonstrate this approach by analysing two massive ellipticals from the XLENS Survey for which both high-resolution HST imaging and X-Shooter spectroscopic observations are available. We adopt a flexible axisymmetric two-component mass model for the lens galaxies, consisting of a generalised NFW dark halo and a realistic self-gravitating stellar mass distribution. For both systems, we put constraints on the dark halo inner structure and flattening, and we find that they are dominated by the luminous component within one effective radius. By comparing the tight...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Our understanding of the structure and formation of early-type galaxies (ETGs) is rapidly evolving, ...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
Strong gravitational lensing by groups or clusters of galaxies provides a powerful technique to meas...
We use a sample of 53 massive early-type strong gravitational lens galaxies with well-measured redsh...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing by groups or clusters of galaxies provides a powerful technique to meas...
International audienceWe use a sample of 53 massive early-type strong gravitational lens galaxies wi...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
For 18 well-observed gravitationally lensed QSOs, we compare new non-parametric mass profiles for th...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Our understanding of the structure and formation of early-type galaxies (ETGs) is rapidly evolving, ...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
Strong gravitational lensing by groups or clusters of galaxies provides a powerful technique to meas...
We use a sample of 53 massive early-type strong gravitational lens galaxies with well-measured redsh...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing by groups or clusters of galaxies provides a powerful technique to meas...
International audienceWe use a sample of 53 massive early-type strong gravitational lens galaxies wi...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
For 18 well-observed gravitationally lensed QSOs, we compare new non-parametric mass profiles for th...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
Our understanding of the structure and formation of early-type galaxies (ETGs) is rapidly evolving, ...