Flux limited X-ray surveys of galaxy clusters show that clusters come in two roughly equally propor-tioned varieties: “cool core ” clusters (CCs) and non-“cool core ” clusters (NCCs). In previous work, we have demonstrated using cosmological N-body + Eulerian hydrodynamic simulations that NCCs are often consistent with early major mergers events that destroy embryonic CCs. In this paper we extend those results and conduct a series of simulations using different methods of gas cooling, and of energy and metal feedback from supernovae, where we attempt to produce a population of clusters with realistic central cooling times, entropies, and temperatures. We find that the use of metallicity-dependent gas cooling is essential to prevent early ov...
We calculate X-ray properties of present-day galaxy clusters from hydrodynamical cosmological simula...
We study the long-term evolution of an idealized cool-core galaxy cluster under the influence of mom...
We present the RHAPSODY-G suite of cosmological hydrodynamic zoom simulations of 10 massive galaxy c...
We study the effects of radiative cooling, star formation and stellar feedback on the properties and...
We present numerical simulations of galaxy clusters with stochastic heating from active galactic nuc...
Simulations of galaxy clusters have a difficult time reproducing the radial gas-property gradients a...
Observed clusters of galaxies essentially come in two flavours: non-cool-core clusters characterized...
We present results from a new set of 30 cosmological simulations of galaxy clusters, including the e...
It is now widely accepted that heating processes play a fundamental role in galaxy clusters, struggl...
Clusters without cooling are unrealistic. Radiative cooling must be included in cosmo-logical simula...
We present a study of the effect of active galactic nuclei (AGN) feedback on metal enrichment and th...
The thermodynamic structure of hot gas in galaxy clusters is sensitive to astrophysical processes an...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
International audienceWe present the rhapsody-g suite of cosmological hydrodynamic zoom simulations ...
Results from a large sample of hydrodynamical/N-body simulations of galaxy clusters in a ΛCDM cosmol...
We calculate X-ray properties of present-day galaxy clusters from hydrodynamical cosmological simula...
We study the long-term evolution of an idealized cool-core galaxy cluster under the influence of mom...
We present the RHAPSODY-G suite of cosmological hydrodynamic zoom simulations of 10 massive galaxy c...
We study the effects of radiative cooling, star formation and stellar feedback on the properties and...
We present numerical simulations of galaxy clusters with stochastic heating from active galactic nuc...
Simulations of galaxy clusters have a difficult time reproducing the radial gas-property gradients a...
Observed clusters of galaxies essentially come in two flavours: non-cool-core clusters characterized...
We present results from a new set of 30 cosmological simulations of galaxy clusters, including the e...
It is now widely accepted that heating processes play a fundamental role in galaxy clusters, struggl...
Clusters without cooling are unrealistic. Radiative cooling must be included in cosmo-logical simula...
We present a study of the effect of active galactic nuclei (AGN) feedback on metal enrichment and th...
The thermodynamic structure of hot gas in galaxy clusters is sensitive to astrophysical processes an...
We present results on the X-ray properties of clusters and groups of galaxies, extracted from a larg...
International audienceWe present the rhapsody-g suite of cosmological hydrodynamic zoom simulations ...
Results from a large sample of hydrodynamical/N-body simulations of galaxy clusters in a ΛCDM cosmol...
We calculate X-ray properties of present-day galaxy clusters from hydrodynamical cosmological simula...
We study the long-term evolution of an idealized cool-core galaxy cluster under the influence of mom...
We present the RHAPSODY-G suite of cosmological hydrodynamic zoom simulations of 10 massive galaxy c...