In the hierarchical structure formation model, clusters of galaxies form through a sequence of mergers and continuous mass accretion, which generate significant random gas motions especially in their outskirts where material is actively accreting. Non-thermal pressure provided by the internal gas motions affects the thermo-dynamic structure of the X-ray emitting intracluster plasma and introduces biases in the physical interpretation of X-ray and Sunyaev-Zeldovich effect observations. However, we know very little about the nature of gas motions in galaxy clusters. The ASTRO-H X-ray mission, scheduled to launch in 2015, will have a calorime-ter capable of measuring gas motions in galaxy clusters at the level of.100 km/s. In this work, we pre...
In this work, we examine the effects of mergers on the hydrostatic mass estimate of galaxy clusters ...
Utilising hydrodynamic + N-body simulations, we present the first holistic view of minor mergers of ...
Galaxy clusters are unique laboratories for studying astrophysical processes and their impact on gas...
Major mergers between galaxy clusters can produce large turbulent and bulk flow velocities in the in...
The most massive halos of matter in the Universe grow via accretion and merger events throughout cos...
Major mergers between galaxy clusters can produce large turbulent and bulk flow velocities in the in...
We study motions of galaxies in galaxy clusters formed in the concordance LCDM cosmology. We use hig...
Astro-H will be the first X-ray observatory to employ a high-resolution microcalorimeter, capable of...
International audienceThe mass fraction of hot gas in clusters is a basic quantity whose level and d...
In this paper I briefly discuss progress in recent lines of research on the internal dynamics of clu...
Matter distribution in the environment of galaxy clusters, from their cores to their connected cosmi...
We study simple models of massive galaxy clusters in which the intracluster medium (ICM) rotates dif...
We present an observational analysis of numerical simulations of galaxy cluster mergers. We identify...
Galaxy clusters are harsh environments for their constituent galaxies. A variety of physical process...
Galaxy clusters span a range of dynamical states, from violent mergers -- the most energetic events ...
In this work, we examine the effects of mergers on the hydrostatic mass estimate of galaxy clusters ...
Utilising hydrodynamic + N-body simulations, we present the first holistic view of minor mergers of ...
Galaxy clusters are unique laboratories for studying astrophysical processes and their impact on gas...
Major mergers between galaxy clusters can produce large turbulent and bulk flow velocities in the in...
The most massive halos of matter in the Universe grow via accretion and merger events throughout cos...
Major mergers between galaxy clusters can produce large turbulent and bulk flow velocities in the in...
We study motions of galaxies in galaxy clusters formed in the concordance LCDM cosmology. We use hig...
Astro-H will be the first X-ray observatory to employ a high-resolution microcalorimeter, capable of...
International audienceThe mass fraction of hot gas in clusters is a basic quantity whose level and d...
In this paper I briefly discuss progress in recent lines of research on the internal dynamics of clu...
Matter distribution in the environment of galaxy clusters, from their cores to their connected cosmi...
We study simple models of massive galaxy clusters in which the intracluster medium (ICM) rotates dif...
We present an observational analysis of numerical simulations of galaxy cluster mergers. We identify...
Galaxy clusters are harsh environments for their constituent galaxies. A variety of physical process...
Galaxy clusters span a range of dynamical states, from violent mergers -- the most energetic events ...
In this work, we examine the effects of mergers on the hydrostatic mass estimate of galaxy clusters ...
Utilising hydrodynamic + N-body simulations, we present the first holistic view of minor mergers of ...
Galaxy clusters are unique laboratories for studying astrophysical processes and their impact on gas...