We use stellar dynamics, strong lensing, stellar population synthesis models, and weak lensing shear measurements to constrain the dark matter (DM) profile and stellar mass in a sample of 53 massive early-type galaxies. We explore three DM halo models (unperturbed Navarro, Frenk, and White (NFW) halos and the adiabatic contraction models of Blumenthal and Gnedin) and impose a model for the relationship between the stellar and virial mass (i.e., a relationship for the star formation efficiency as a function of halo mass). We show that, given our model assumptions, the data clearly prefer a Salpeter-like initial mass function (IMF) over a lighter IMF (e.g., Chabrier or Kroupa), irrespective of the choice of DM halo. In addition, we find that ...
International audienceWe investigate the cosmic evolution of the internal structure of massive early...
The condensation of baryons within a dark matter (DM) halo during galaxy formation should result in ...
We determine an absolute calibration of stellar mass-to-light ratios for the densest 433 per cent o...
International audienceWe use stellar dynamics, strong lensing, stellar population synthesis models, ...
We use stellar dynamics, strong lensing, stellar population synthesis models, and weak lensing shear...
We determine an absolute calibration of the initial mass function (IMF) of early-type galaxies, by s...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
We investigate the origin of the relations between stellar mass and optical circular velocity for ea...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
This work aims to study the distribution of the luminous and dark matter in Coma early-type galaxies...
Three open problems in our understanding of early-type galaxies are 1) identifying theprocess(es) re...
Given a flurry of recent claims for systematic variations in the stellar initial mass function (IMF)...
We investigate the cosmic evolution of the internal structure of massive early-type galaxies over ha...
We studied the stellar populations, distribution of dark matter, and dynamical structure of a sample...
International audienceWe investigate the cosmic evolution of the internal structure of massive early...
The condensation of baryons within a dark matter (DM) halo during galaxy formation should result in ...
We determine an absolute calibration of stellar mass-to-light ratios for the densest 433 per cent o...
International audienceWe use stellar dynamics, strong lensing, stellar population synthesis models, ...
We use stellar dynamics, strong lensing, stellar population synthesis models, and weak lensing shear...
We determine an absolute calibration of the initial mass function (IMF) of early-type galaxies, by s...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
We investigate the origin of the relations between stellar mass and optical circular velocity for ea...
Stars and dark matter account for most of the mass of early-type galaxies, but uncertainties in the ...
This work aims to study the distribution of the luminous and dark matter in Coma early-type galaxies...
Three open problems in our understanding of early-type galaxies are 1) identifying theprocess(es) re...
Given a flurry of recent claims for systematic variations in the stellar initial mass function (IMF)...
We investigate the cosmic evolution of the internal structure of massive early-type galaxies over ha...
We studied the stellar populations, distribution of dark matter, and dynamical structure of a sample...
International audienceWe investigate the cosmic evolution of the internal structure of massive early...
The condensation of baryons within a dark matter (DM) halo during galaxy formation should result in ...
We determine an absolute calibration of stellar mass-to-light ratios for the densest 433 per cent o...