We use a three-dimensional hydrodynamical code to simulate the effect of energy injection on cooling flows in the intracluster medium. Specifically, we compare a simulation of a 1015-M cluster with radiative cooling only with a second simulation in which thermal energy is injected 31 kpc off-centre, over 64 kpc3 at a rate of for 50 Myr. The heat injection forms a hot, low-density bubble which quickly rises, dragging behind it material from the cluster core. The rising bubble pushes with it a shell of gas which expands and cools. We find the appearance of the bubble in X-ray temperature and luminosity to be in good qualitative agreement with recent Chandra observations of cluster cores. Toward the end of the simulation, at 600 Myr, the disp...
We present a study of cooling in radiative shocks simulated with smoothed particle hydrodynamics and...
We study the formation of discs via the cooling flow of gas within galactic haloes using smoothed pa...
We implement a black hole spin evolution and jet feedback model into SWIFT, a smoothed particle hydr...
Over the past several years, numerous examples of X-ray cavities coincident with radio sources have ...
We examine the distribution of injected energy in three-dimensional, adaptive-grid simulations of th...
X-ray observations of clusters of galaxies reveal the presence of edges in surface brightness and te...
Recent measurements of the K-band luminosity function now provide us with strong, reliable constrain...
It is now widely accepted that heating processes play a fundamental role in galaxy clusters, struggl...
We investigate the properties of the intracluster medium (ICM) that forms within N-body/hydrodynamic...
We report the results of 1-D hydrodynamical modelling of the evolution of gas in galaxy clusters. We...
The quenching ‘maintenance’ and ‘cooling flow’ problems are important from the Milky Way through mas...
Publisher's version/PDFWe report the results of experiments aimed at reducing the major problem with...
This thesis explores the role of active galactic nuclei (AGN) in the heating of the intracluster med...
Temperature distributions within cores of galaxy clusters indicate gas in the core should cool down ...
X-ray observations show that the Intra Cluster Medium (ICM) in many galaxy clusters is cooling at a ...
We present a study of cooling in radiative shocks simulated with smoothed particle hydrodynamics and...
We study the formation of discs via the cooling flow of gas within galactic haloes using smoothed pa...
We implement a black hole spin evolution and jet feedback model into SWIFT, a smoothed particle hydr...
Over the past several years, numerous examples of X-ray cavities coincident with radio sources have ...
We examine the distribution of injected energy in three-dimensional, adaptive-grid simulations of th...
X-ray observations of clusters of galaxies reveal the presence of edges in surface brightness and te...
Recent measurements of the K-band luminosity function now provide us with strong, reliable constrain...
It is now widely accepted that heating processes play a fundamental role in galaxy clusters, struggl...
We investigate the properties of the intracluster medium (ICM) that forms within N-body/hydrodynamic...
We report the results of 1-D hydrodynamical modelling of the evolution of gas in galaxy clusters. We...
The quenching ‘maintenance’ and ‘cooling flow’ problems are important from the Milky Way through mas...
Publisher's version/PDFWe report the results of experiments aimed at reducing the major problem with...
This thesis explores the role of active galactic nuclei (AGN) in the heating of the intracluster med...
Temperature distributions within cores of galaxy clusters indicate gas in the core should cool down ...
X-ray observations show that the Intra Cluster Medium (ICM) in many galaxy clusters is cooling at a ...
We present a study of cooling in radiative shocks simulated with smoothed particle hydrodynamics and...
We study the formation of discs via the cooling flow of gas within galactic haloes using smoothed pa...
We implement a black hole spin evolution and jet feedback model into SWIFT, a smoothed particle hydr...