English

Chandra observations of the galaxy group AWM 5: cool core re-heating and thermal conduction suppression

Astrophysics 2011-02-11 v2

Abstract

We present an analysis of a 40 ksec Chandra observation of the galaxy group AWM 5. It has a small (8\sim8 kpc) dense cool core with a temperature of 1.2\sim1.2 keV and the temperature profile decreases at larger radii, from 3.5\sim3.5 keV just outside the core to 2\sim2 keV at 300\sim300 kpc from the center. The abundance distribution shows a "hole" in the central 10\sim10 kpc, where the temperature declines sharply. An abundance of at least a few times solar is observed 1520\sim15-20 kpc from the center. The deprojected electron density profile shows a break in slope at 13\sim13 kpc and can be fit by two β\beta-models, with β=0.720.11+0.16\beta=0.72_{-0.11}^{+0.16} and rc=5.71.5+1.8r_c=5.7_{-1.5}^{+1.8} kpc, for the inner part, and β=0.34±0.01\beta=0.34\pm0.01 and rc=31.35.5+5.8r_c=31.3_{-5.5}^{+5.8} kpc, for the outer part. The mass fraction of hot gas is fairly flat in the center and increases for r>30r>30 kpc up to a maximum of 6.5\sim6.5% at r380r\sim380 kpc. The gas cooling time within the central 30 kpc is smaller than a Hubble time, although the temperature only declines in the central 8\sim8 kpc region. This discrepancy suggests that an existing cooling core has been partially re-heated. In particular, thermal conduction could have been a significant source of re-heating. In order for heating due to conduction to balance cooling due to emission of X-rays, the conductivity must be suppressed by a large factor (at least 100\sim100). Past AGN activity (still visible as a radio source in the center of the group) is however the most likely source that re-heated the central regions of AWM 5.

Keywords

Cite

@article{arxiv.0811.3654,
  title  = {Chandra observations of the galaxy group AWM 5: cool core re-heating and thermal conduction suppression},
  author = {A. Baldi and W. Forman and C. Jones and P. Nulsen and L. David and R. Kraft and A. Simionescu},
  journal= {arXiv preprint arXiv:0811.3654},
  year   = {2011}
}

Comments

24 pages, 17 figures, Accepted for publication in the Astrophysical Journal