International audienceThe mass fraction of hot gas in clusters is a basic quantity whose level and dependence on the cluster mass and redshift are intimately linked to all cluster X-ray and Sunyayev-Zel'dovich measures. Modelling the evolution of the gas fraction is clearly a necessary ingredient in the description of the hierarchical growth of clusters through mergers of subclumps and mass accretion on the one hand, and the dispersal of gas from the cluster galaxies by tidal interactions, galactic winds and ram-pressure stripping on the other hand. A reasonably complete description of this evolution can only be given by very detailed hydrodynamical simulations, which are, however, resource-intensive and difficult to implement in the mappin...
We model the formation and evolution of galaxy clusters in the framework of an extended dark matter ...
In the hierarchical structure formation model, clusters of galaxies form through a sequence of merge...
The formation and evolution of an X--ray cluster is studied using a 3--D N-body + hydrodynamical sim...
In the rst part of my contribution I discuss the role that X-ray galaxy clusters play in the determi...
The vast majority of galaxies contains large populations of stellar clusters, which are bound groups...
The temporal dynamical and structural evolution of clusters of galaxy is studied using N-body simula...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
Formation of galaxy clusters corresponds to the collapse of the largest gravitationally bound overde...
International audienceWe use the cosmo-OverWhelmingly Large Simulation (cosmo-OWLS) suite of cosmolo...
Galaxy clusters are harsh environments for their constituent galaxies. A variety of physical process...
We present gas mass fractions of 38 massive galaxy clusters spanning redshifts from 0.14 to 0.89, de...
We use gas-dynamical simulations of galaxy clusters to compare their X-ray and strong lensing proper...
Galaxy clusters are the most massive structures in the universe and, in the hierarchical pattern of ...
We detail method and report results from an ensemble of three-dimensional hydrodynamical and N-body ...
We study the gas mass fraction behavior in distant galaxy clusters observed within the $\mbox{\it X...
We model the formation and evolution of galaxy clusters in the framework of an extended dark matter ...
In the hierarchical structure formation model, clusters of galaxies form through a sequence of merge...
The formation and evolution of an X--ray cluster is studied using a 3--D N-body + hydrodynamical sim...
In the rst part of my contribution I discuss the role that X-ray galaxy clusters play in the determi...
The vast majority of galaxies contains large populations of stellar clusters, which are bound groups...
The temporal dynamical and structural evolution of clusters of galaxy is studied using N-body simula...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
Formation of galaxy clusters corresponds to the collapse of the largest gravitationally bound overde...
International audienceWe use the cosmo-OverWhelmingly Large Simulation (cosmo-OWLS) suite of cosmolo...
Galaxy clusters are harsh environments for their constituent galaxies. A variety of physical process...
We present gas mass fractions of 38 massive galaxy clusters spanning redshifts from 0.14 to 0.89, de...
We use gas-dynamical simulations of galaxy clusters to compare their X-ray and strong lensing proper...
Galaxy clusters are the most massive structures in the universe and, in the hierarchical pattern of ...
We detail method and report results from an ensemble of three-dimensional hydrodynamical and N-body ...
We study the gas mass fraction behavior in distant galaxy clusters observed within the $\mbox{\it X...
We model the formation and evolution of galaxy clusters in the framework of an extended dark matter ...
In the hierarchical structure formation model, clusters of galaxies form through a sequence of merge...
The formation and evolution of an X--ray cluster is studied using a 3--D N-body + hydrodynamical sim...