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20 April 2024
 
  » arxiv » astro-ph/0110554

 Article overview


Discovery of Ghost Cavities in Abell 2597's X-ray Atmosphere
B. R. McNamara ; M. W. Wise ; P. E. J. Nulsen ; L. P. David ; C. L. Carilli ; C. L. Sarazin ; C. P. O’Dea ; J. Houck ; M. Donahue ; S. Baum ; M. Voit ; R. W. O’Connell ; A. Koekemoer ;
Date 25 Oct 2001
Journal Astrophys.J. 562 (2001) L149
Subject astro-ph
AffiliationOhio U.), M. W. Wise (MIT/CSR), P. E. J. Nulsen (Wollongong), L. P. David (CfA), C. L. Carilli (NRAO/VLA), C. L. Sarazin (Virginia), C. P. O’Dea (STScI), J. Houck (MIT/CSR), M. Donahue (STScI), S. Baum (STScI), M. Voit (STScI), R. W. O’Conn
AbstractA Chandra image of the central 100 kpc of the Abell 2597 cluster of galaxies shows bright, irregular, X-ray emission within the central dominant cluster galaxy (CDG), and two low surface brightness cavities located 30 kpc from the CDG’s nucleus. Unlike the cavities commonly seen in other clusters, Abell 2597’s ``ghost’’ cavities are not coincident with the bright central radio source. Instead, they appear to be associated with faint, extended radio emission seen in a deep VLA radio map. We interpret the ghost cavities as buoyantly-rising relics of a radio outburst that occurred between 50--100 Myr ago. The demography of cavities in the few clusters studied thus far shows that galactic radio sources experience recurrent outbursts on a $sim 100$ Myr timescale. Over the lifetime of a cluster, ghost cavities emerging from CDGs deposit $gae 10^{59-61}$ erg of energy into the intracluster medium. If a significant fraction of this energy is deposited as magnetic field, it would account for the high field strengths in the cooling flow regions of clusters. The similarity between the central cooling time of the keV gas and the radio cycling timescale suggests that feedback between cooling gas and the radio source may be retarding or quenching the cooling flow.
Source arXiv, astro-ph/0110554
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