Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can be underestimated by 10%-30%. The largest bias originates from both violation of hydrostatic equilibrium (HE) and an additional temperature bias caused by inhomogeneities in the X-ray-emitting intracluster medium (ICM). To elucidate this large dispersion among theoretical predictions, we evaluate the degree of temperature structures in cluster sets simulated either with smoothed-particle hydrodynamics (SPH) or adaptive-mesh refinement (AMR) codes. We find that the SPH simulations produce larger temperature variations connected to the persistence of both substructures and their stripped cold gas. This difference is more evident in nonradiative ...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
We investigate the properties of the intracluster medium (ICM) that forms within N-body/hydrodynamic...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
We measure for the first time the intracluster medium temperature distributions for 62 galaxy cluste...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
We investigate the properties of the intracluster medium (ICM) that forms within N-body/hydrodynamic...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
Analyses of cosmological hydrodynamic simulations of galaxy clusters suggest that X-ray masses can b...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
We measure for the first time the intracluster medium temperature distributions for 62 galaxy cluste...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
Using extended sets of cosmological hydrodynamical simulations of galaxy clusters, we present a deta...
We investigate the properties of the intracluster medium (ICM) that forms within N-body/hydrodynamic...