We present results from a large set of N-body/smoothed particle hydrodynamics (SPH) hydrodynamical cluster simulations aimed at studying the statistical properties of turbulence in the intracluster medium (ICM). The numerical hydrodynamical scheme employs an SPH formulation in which gradient errors are strongly reduced by using an integral approach. We consider both adiabatic and radiative simulations. We construct cluster subsamples according to the cluster dynamical status or gas physical modeling, from which we extract small-scale turbulent velocities obtained by applying different multiscale filtering methods to cluster velocities. The velocity power spectra of nonradiative relaxed clusters are mostly solenoidal and exhibit a peak at wa...
Context. Feedback from active galactic nuclei, galactic mergers, and sloshing are thought to give ri...
Context. The dynamics of the intracluster medium (ICM) is affected by turbulence driven by several p...
We study the interplay between turbulent heating, mixing, and radiative cooling in an idealized mode...
none5We present a study of the turbulent velocity fields in the intracluster medium (ICM) of a sampl...
none3We have designed a simple multi-scale method that identifies turbulent motions in hydrodynamica...
We present a study of the turbulent velocity fields in the intracluster medium (ICM) of a sample of...
We have designed a simple multi-scale method that identifies turbulent motions in hydrodynamical gri...
none4Smoothed particle hydrodynamics (SPH) employs an artificial viscosity to properly capture hydro...
The goal of this paper is to investigate in N-body/SPH hydrodynamical cluster simulations the impact...
Smoothed particle hydrodynamics (SPH) employs an artificial viscosity to properly capture hydrodynam...
The gas in galaxy clusters is heated by shock compression through accretion (outer shocks) and merge...
none2siWe review our knowledge about turbulence in the intracluster medium, a very hot, dilute plasm...
We study the properties of chaotic motions in the intra cluster medium using a set of 20 g...
We conduct two kinds of homogeneous isotropic turbulence simulations relevant for the intracluster m...
none5We study the properties of chaotic motions in the intra cluster medium using a set of 20 galaxy...
Context. Feedback from active galactic nuclei, galactic mergers, and sloshing are thought to give ri...
Context. The dynamics of the intracluster medium (ICM) is affected by turbulence driven by several p...
We study the interplay between turbulent heating, mixing, and radiative cooling in an idealized mode...
none5We present a study of the turbulent velocity fields in the intracluster medium (ICM) of a sampl...
none3We have designed a simple multi-scale method that identifies turbulent motions in hydrodynamica...
We present a study of the turbulent velocity fields in the intracluster medium (ICM) of a sample of...
We have designed a simple multi-scale method that identifies turbulent motions in hydrodynamical gri...
none4Smoothed particle hydrodynamics (SPH) employs an artificial viscosity to properly capture hydro...
The goal of this paper is to investigate in N-body/SPH hydrodynamical cluster simulations the impact...
Smoothed particle hydrodynamics (SPH) employs an artificial viscosity to properly capture hydrodynam...
The gas in galaxy clusters is heated by shock compression through accretion (outer shocks) and merge...
none2siWe review our knowledge about turbulence in the intracluster medium, a very hot, dilute plasm...
We study the properties of chaotic motions in the intra cluster medium using a set of 20 g...
We conduct two kinds of homogeneous isotropic turbulence simulations relevant for the intracluster m...
none5We study the properties of chaotic motions in the intra cluster medium using a set of 20 galaxy...
Context. Feedback from active galactic nuclei, galactic mergers, and sloshing are thought to give ri...
Context. The dynamics of the intracluster medium (ICM) is affected by turbulence driven by several p...
We study the interplay between turbulent heating, mixing, and radiative cooling in an idealized mode...