We analyse the dynamical and thermal evolution of dark matter and the intracluster medium in hydrodynamical N-body simulations of galaxy clusters. Starting from a sample of 17 high-resolution objects, with virial mass ranging from 3 7 1014 to 1.7 7 1015h-1 Msolar, we follow the build-up of the systems in dark matter and hot gas through the repeated merging of satellites along their merging history trees. We measure the self-bound mass fraction of subhaloes as a function of time after the merging, estimate the satellite mean orbital properties as a function of the mass ratio with the main cluster at merging time, and study the evolution of their internal velocity dispersion, gas temperature and entropy as the substructure is dis...
© 2020. The American Astronomical Society. All rights reserved Satellites constitute an important fr...
We report the results of 1-D hydrodynamical modelling of the evolution of gas in galaxy clusters. We...
We detail method and report results from an ensemble of three-dimensional hydrodynamical and N-body ...
We analyze the dynamical and thermal evolution of dark matter and ICM in hydrodynamical Tree-SPH sim...
In this work, we examine the different properties of galactic satellites in hydrodynamical and pure ...
Using high-resolution cosmological N-body simulations, we investigate the survival of dark matter sa...
We use high-resolution hydrodynamic simulations to investigate the density profile of hot gas in clu...
Satellites constitute an important fraction of the overall galaxy population and are believed to for...
We use N-body simulations to study the infall of dark matter haloes on to rich clusters of galaxies....
The temporal dynamical and structural evolution of clusters of galaxy is studied using N-body simula...
We use numerical simulations of galaxy clusters to study the dynamical and thermal evolution of the ...
Numerical simulations of clusters of galaxies provide a unique way to follow the dynamics of these s...
We discuss an extended set of Tree+SPH (smoothed particle hydrodynamics) simulations of the formati...
We study the statistical properties of mergers between central and satellite galaxies in galaxy clus...
We study the kinematics of galaxies within massive clusters, as a probe of the physics of star forma...
© 2020. The American Astronomical Society. All rights reserved Satellites constitute an important fr...
We report the results of 1-D hydrodynamical modelling of the evolution of gas in galaxy clusters. We...
We detail method and report results from an ensemble of three-dimensional hydrodynamical and N-body ...
We analyze the dynamical and thermal evolution of dark matter and ICM in hydrodynamical Tree-SPH sim...
In this work, we examine the different properties of galactic satellites in hydrodynamical and pure ...
Using high-resolution cosmological N-body simulations, we investigate the survival of dark matter sa...
We use high-resolution hydrodynamic simulations to investigate the density profile of hot gas in clu...
Satellites constitute an important fraction of the overall galaxy population and are believed to for...
We use N-body simulations to study the infall of dark matter haloes on to rich clusters of galaxies....
The temporal dynamical and structural evolution of clusters of galaxy is studied using N-body simula...
We use numerical simulations of galaxy clusters to study the dynamical and thermal evolution of the ...
Numerical simulations of clusters of galaxies provide a unique way to follow the dynamics of these s...
We discuss an extended set of Tree+SPH (smoothed particle hydrodynamics) simulations of the formati...
We study the statistical properties of mergers between central and satellite galaxies in galaxy clus...
We study the kinematics of galaxies within massive clusters, as a probe of the physics of star forma...
© 2020. The American Astronomical Society. All rights reserved Satellites constitute an important fr...
We report the results of 1-D hydrodynamical modelling of the evolution of gas in galaxy clusters. We...
We detail method and report results from an ensemble of three-dimensional hydrodynamical and N-body ...