The Influence of Baryons on the Mass Distribution of Dark Matter Halos
- 10 November 2006
- journal article
- research article
- Published by American Astronomical Society in The Astrophysical Journal
- Vol. 651 (2) , 636-642
- https://doi.org/10.1086/508052
Abstract
Using a set of high-resolution N-body/SPH cosmological simulations with identical initial conditions but run with different numerical setups, we investigate the influence of baryonic matter on the mass distribution of dark halos when radiative cooling is not included. We compare the concentration parameters of about 400 massive halos with virial mass from 1013 to 7.1 × 1014 h-1 M☉. We find that the concentration parameters for the total mass and dark matter distributions in nonradiative simulations are on average larger by ~3% and 10% than those in a pure dark matter simulation. Our results indicate that the total mass density profile is little affected by a hot gas component in the simulations. After carefully excluding the effects of resolutions and spurious two-body heating between dark matter (DM) and gas particles, we conclude that the increase of the DM concentration parameters is due to interactions between baryons and DM. We demonstrate this with the aid of idealized simulations of two-body mergers. The results of individual halos simulated with different mass resolutions show that in the gas profiles of densities, temperature and entropy are subjects of mass resolution of SPH particles. In particular, we find that in the inner parts of halos, as the SPH resolution increases the gas density becomes higher but both the entropy and temperature decrease.Keywords
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This publication has 37 references indexed in Scilit:
- The Surprisingly Steep Mass Profile of A1689, from a Lensing Analysis of Subaru ImagesThe Astrophysical Journal, 2005
- Statistics of Giant Arcs in Galaxy ClustersThe Astrophysical Journal, 2004
- Flat-cored Dark Matter in Cuspy Clusters of GalaxiesThe Astrophysical Journal, 2004
- Do arcs require flat halo cusps?Astronomy & Astrophysics, 2004
- The Dark Matter Radial Profile in the Core of the Relaxed Cluster A2589The Astrophysical Journal, 2004
- X-ray properties of galaxy clusters and groups from a cosmological hydrodynamical simulationMonthly Notices of the Royal Astronomical Society, 2004
- The radial structure of galaxy groups and clustersMonthly Notices of the Royal Astronomical Society, 2003
- Dark Halos: The Flattening of the Density Cusp by Dynamical FrictionThe Astrophysical Journal, 2001
- The Santa Barbara Cluster Comparison Project: A Comparison of Cosmological Hydrodynamics SolutionsThe Astrophysical Journal, 1999
- Contraction of dark matter galactic halos due to baryonic infallThe Astrophysical Journal, 1986