We use numerical simulations to investigate, for the first time, the joint effect of feedback from supernovae (SNe) and active galactic nuclei (AGN) on the evolution of galaxy cluster X-ray scaling relations. Our simulations are drawn from the Millennium Gas Project and are some of the largest hydrodynamical N-body simulations ever carried out. Feedback is implemented using a hybrid scheme, where the energy input into intracluster gas by SNe and AGN is taken from a semi-analytic model of galaxy formation. This ensures that the source of feedback is a population of galaxies that closely resembles that found in the real Universe. We show that our feedback model is capable of reproducing observed local X-ray scaling laws, at least for non-cool...
Galaxy clusters are the largest gravitationally-bound objects in the Universe, their unparalleled si...
Clusters of galaxies, which occupy a unique position in hierarchical structure formation, are invalu...
We introduce the Cluster-EAGLE (C-EAGLE) simulation project, a set of cosmological hydrodynamical zo...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We present results from a new set of 30 cosmological simulations of galaxy clusters, including the e...
We investigate the redshift dependence of X-ray cluster scaling relations drawn from three hydrodyna...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
Clusters of galaxies probe the large-scale distribution of matter and are a useful tool to test the ...
We present results from a new set of 30 cosmological simulations of galaxy clusters, including the e...
We use the cosmo-OWLS suite of cosmological hydrodynamical simulations to investigate the scatter an...
We present an analysis of the properties of the intracluster medium (ICM) in an extended set of cosm...
Galaxy clusters are the largest gravitationally-bound objects in the Universe, their unparalleled si...
Clusters of galaxies, which occupy a unique position in hierarchical structure formation, are invalu...
We introduce the Cluster-EAGLE (C-EAGLE) simulation project, a set of cosmological hydrodynamical zo...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
We present results from a new set of 30 cosmological simulations of galaxy clusters, including the e...
We investigate the redshift dependence of X-ray cluster scaling relations drawn from three hydrodyna...
We analyse cosmological hydrodynamical simulations of galaxy clusters to study the X-ray scaling rel...
Clusters of galaxies probe the large-scale distribution of matter and are a useful tool to test the ...
We present results from a new set of 30 cosmological simulations of galaxy clusters, including the e...
We use the cosmo-OWLS suite of cosmological hydrodynamical simulations to investigate the scatter an...
We present an analysis of the properties of the intracluster medium (ICM) in an extended set of cosm...
Galaxy clusters are the largest gravitationally-bound objects in the Universe, their unparalleled si...
Clusters of galaxies, which occupy a unique position in hierarchical structure formation, are invalu...
We introduce the Cluster-EAGLE (C-EAGLE) simulation project, a set of cosmological hydrodynamical zo...