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The X-ray Intracluster Medium

Published online by Cambridge University Press:  25 May 2016

H. Böhringer*
Affiliation:
Max-Planck-Institute für extraterrestrische Physik D 85740 Garching, Germany

Extract

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Clusters of galaxies are the largest aggregates of matter that have decoupled from the universal expansion and have approximately evolved to a proper dynamical equilibrium configuration. While in the optical they are just observed as dense concentrations of galaxies, they are seen in X-rays as continuously connected entities through the emission of the X-ray luminous intracluster plasma (e.g. Sarazin 1986). Relativistic particles and magnetic fields are observed in clusters in radio halos, in regions around radio galaxies and through Faraday rotation of the radiation from background radio sources (see contribution by L. Feretti and e.g. Kronberg, 1994). Thus Clusters of galaxies are the largest, well characterized astrophysical laboratories in which plasma physical processes of diffuse media can be studied. In this brief summary the bulk properties of the intracluster medium (ICM) are discussed and two studies of the interaction of galactic radio lobes with the intracluster plasma are presented (related topics are discussed by F. Owen and L. Feretti in this volume).

Type
Radio Sources and their Environment
Copyright
Copyright © Kluwer 1996 

References

Andernach, H., Baker, J.R., von Kap-Herr, A., Wielebinski, R., 1979, Astron. Astrophys. , 74, 93 Google Scholar
Buhringer, H., Schwarz, R.A., Briel, U.G., Voges, W., Ebeling, H., Hartner, G., Cruddace, R.G., 1992, in Clusters and Superclusters of Galaxies , Fabian, A.C. (ed.), Kluwer, p.71 Google Scholar
Buhringer, H., Voges, W., Fabian, A.C., Edge, A.C., Neumann, D.M., 1993, Mon. Not. R. astr. Soc. , 264, L25 Google Scholar
Buhringer, H., Nulsen, P.E.J., Braun, R., Fabain, A.C., 1995, Mon. Not. R. astr. Soc. , (submitted) Google Scholar
Feigelson, E.D., Wood, P.A.D., Schreier, E.J., Harris, D.E., Reid, M.J., 1987, Astrophys. J. , 312, 101 Google Scholar
Kronberg, P., 1994, Rep. Prog. Phys. , 57, 325 Google Scholar
Noordham, J.E. and de Bruyn, A.G., 1982, Nature , 299 1 Google Scholar
Pedlar, A., Ghataure, H.S., Davies, R.D., Harrison, B.A., Perley, R., Crane, P.C., Unger, S.W., 1990, Mon. Not. R. astr. Soc. , 246, 477 Google Scholar
Sarazin, C.L., 1986, Rev. Mod. Phys. , 58, 1 Google Scholar
Trümper, J., 1992, Q. J. R. astr. Soc. , 33, 165 Google Scholar