Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constraints on the density profiles of galaxies. Based on spherically symmetric, scale-free, mass models, it is shown that the combination of both techniques is powerful in breaking the mass-sheet and mass-anisotropy degeneracies. Second, observational results are presented from the Lenses Structure & Dynamics (LSD) Survey and the Sloan Lens ACS (SLACS) Survey collaborations to illustrate this new methodology in constraining the dark and stellar density profiles, and mass structure, of early-type galaxies to redshifts of unity
Context. The largest spectroscopically selected sample of strong gravitational lens systems presente...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
We use stellar masses, surface photometry, strong-lensing masses, and stellar velocity dispersions (...
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...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing and stellar dynamics provide two complementary methods in the study of ...
International audienceWe use stellar masses, surface photometry, strong-lensing masses, and stellar ...
We present a joint gravitational lensing and stellar-dynamical analysis of 15 massive field early-ty...
We present a joint gravitational lensing and stellar-dynamical analysis of 15 massive field early-ty...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
We present a joint gravitational lensing and stellar-dynamical analysis of 15 massive field early-ty...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
International audienceThe initial mass function (IMF) for massive galaxies can be constrained by com...
Context. The largest spectroscopically selected sample of strong gravitational lens systems presente...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
We use stellar masses, surface photometry, strong-lensing masses, and stellar velocity dispersions (...
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...
Strong gravitational lensing and stellar dynamics provide two complementary and orthogonal constrain...
Strong gravitational lensing and stellar dynamics provide two complementary methods in the study of ...
International audienceWe use stellar masses, surface photometry, strong-lensing masses, and stellar ...
We present a joint gravitational lensing and stellar-dynamical analysis of 15 massive field early-ty...
We present a joint gravitational lensing and stellar-dynamical analysis of 15 massive field early-ty...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
We present a joint gravitational lensing and stellar-dynamical analysis of 15 massive field early-ty...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
International audienceThe initial mass function (IMF) for massive galaxies can be constrained by com...
Context. The largest spectroscopically selected sample of strong gravitational lens systems presente...
The combination of strong gravitational lensing and stellar kinematics provides a powerful and robus...
We use stellar masses, surface photometry, strong-lensing masses, and stellar velocity dispersions (...