We measure the projected density profile, shape and alignment of the stellar and dark matter mass distribution in 11 strong-lens galaxies. We find that the projected dark matter density profile - under the assumption of a Chabrier stellar initial mass function - shows significant variation from galaxy to galaxy. Those with an outermost image beyond ˜10 kpc are very well fit by a projected Navarro-Frenk-White (NFW) profile; those with images within 10 kpc appear to be more concentrated than NFW, as expected if their dark haloes contract due to baryonic cooling. We find that over several half-light radii, the dark matter haloes of these lenses are rounder than their stellar mass distributions. While the haloes are never more elliptical than e...
A defining prediction of the cold dark matter cosmological model is the existence of a very large po...
Halo shape estimates that describe their anisotropic mass distribution are valuable parameters that ...
We test with gravitational lensing (GL) data the dark matter (DM) halos embedding the luminous baryo...
We measure the projected density profile, shape and alignment of the stellar and dark matter mass di...
Observations of strong gravitational lensing, stellar kinematics, and larger-scale tracers enable ac...
We present a spatially resolved comparison of the stellar mass and total mass surface distributions ...
Cold dark matter haloes are expected to be triaxial, and so appear elliptical in projection. We use ...
We test with gravitational lensing data the dark matter (DM) halos embedding the luminous baryonic c...
Observations of strong gravitational lensing, stellar kinematics, and larger-scale tracers enable ac...
The degeneracy between disc and halo contributions in spiral galaxy rotation curves makes it difficu...
We assess how much unused strong lensing information is available in the deep Hubble Space Telescope...
We present the distribution of luminous and dark matter in a set of strong lensing (early-type) gala...
International audienceCosmological simulations predict that galaxies are embedded into triaxial dark...
The location of the images in a multiple-image gravitational lens system are strongly dependent on t...
Dark matter haloes are expected to have a triaxial shape, appearing elliptical in projection. Unders...
A defining prediction of the cold dark matter cosmological model is the existence of a very large po...
Halo shape estimates that describe their anisotropic mass distribution are valuable parameters that ...
We test with gravitational lensing (GL) data the dark matter (DM) halos embedding the luminous baryo...
We measure the projected density profile, shape and alignment of the stellar and dark matter mass di...
Observations of strong gravitational lensing, stellar kinematics, and larger-scale tracers enable ac...
We present a spatially resolved comparison of the stellar mass and total mass surface distributions ...
Cold dark matter haloes are expected to be triaxial, and so appear elliptical in projection. We use ...
We test with gravitational lensing data the dark matter (DM) halos embedding the luminous baryonic c...
Observations of strong gravitational lensing, stellar kinematics, and larger-scale tracers enable ac...
The degeneracy between disc and halo contributions in spiral galaxy rotation curves makes it difficu...
We assess how much unused strong lensing information is available in the deep Hubble Space Telescope...
We present the distribution of luminous and dark matter in a set of strong lensing (early-type) gala...
International audienceCosmological simulations predict that galaxies are embedded into triaxial dark...
The location of the images in a multiple-image gravitational lens system are strongly dependent on t...
Dark matter haloes are expected to have a triaxial shape, appearing elliptical in projection. Unders...
A defining prediction of the cold dark matter cosmological model is the existence of a very large po...
Halo shape estimates that describe their anisotropic mass distribution are valuable parameters that ...
We test with gravitational lensing (GL) data the dark matter (DM) halos embedding the luminous baryo...