A Merger Shock in Abell 2034
Abstract
We present a ks Chandra observation of the cluster merger A2034 with the aim of understanding the nature of a sharp edge previously characterized as a cold front. The new data reveal that the edge is coherent over a larger opening angle and is significantly more bow-shock-shaped than previously thought. Within degrees about the axis of symmetry of the edge the density, temperature and pressure drop abruptly by factors of , and , respectively. This is inconsistent with the pressure equilibrium expected of a cold front and we conclude that the edge is a shock front. We measure a Mach number and corresponding shock velocity km/s. Using spectra collected at the MMT with the Hectospec multi-object spectrograph we identify 328 spectroscopically confirmed cluster members. Significantly, we find a local peak in the projected galaxy density associated with a bright cluster galaxy which is located just ahead of the nose of the shock. The data are consistent with a merger viewed within degrees of the plane of the sky. The merging subclusters are now moving apart along a north-south axis approximately Gyr after a small impact parameter core passage. The gas core of the secondary subcluster, which was driving the shock, appears to have been disrupted by the merger. Without a driving 'piston' we speculate that the shock is dying. Finally, we propose that the diffuse radio emission near the shock is due to the revival of pre-existing radio plasma which has been overrun by the shock.
Keywords
Cite
@article{arxiv.1311.5561,
title = {A Merger Shock in Abell 2034},
author = {Matt S. Owers and Paul E. J. Nulsen and Warrick J. Couch and Cheng-Jiun Ma and Laurence P. David and William R. Forman and Andrew M. Hopkins and Christine Jones and Reinout J. van Weeren},
journal= {arXiv preprint arXiv:1311.5561},
year = {2015}
}
Comments
14 pages, 8 figures, 3 tables. Accepted for publication in ApJ