Hostname: page-component-586b7cd67f-t7czq Total loading time: 0 Render date: 2024-11-26T18:42:58.877Z Has data issue: false hasContentIssue false

Hot Gas in Clusters of Galaxies

Published online by Cambridge University Press:  30 March 2016

J. L. Culhane*
Affiliation:
Mullard Space Science Laboratory, Department of Physics and Astronomy, University CollegeLondon, Holmbury St. Mary, Dorking, Surrey, England.

Extract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

The discovery of extended X-ray sources associated with clusters of galaxies which resulted from the Uhuru X-ray sky survey was one of the most important observations to come from that programme. Following Uhuru, the Ariel V and HEAO-1 sky surveys have found many more cluster X-ray sources and the recently launched Einstein observatory has begun to increase further the number of identifications. However there is in any case evidence from the X-ray cluster luminosity function that all rich clusters of galaxies will emit X-rays at some level.

Preliminary results from the Einstein observatory (Murray, 1979) suggest that the extended X-ray emission from centrally condensed (cD) clusters is itself centrally condensed and spherically symmetrical in appearance. However irregular clusters have non-uniform X-ray surface brightness distributions. In addition there are some galaxies in clusters of irregular morphology that have associated X-ray halos.

Type
Joint Discussion
Copyright
Copyright © Cambridge University Press 1980

References

Bahcall, N.A., (1977a), Astrophys. J., 217, L77.Google Scholar
Bahcall, N.A., (1977b), Astrophys. J., 218, L93.Google Scholar
Bahcall, J., and Sarazin, C.L., (1978), Astrophys. J., 219, 781.Google Scholar
Berthelsdorf, R.F., and Culhane, J.L., (1979), M.N.R.A.S., 187, 17P Google Scholar
Birkinshaw, M., Gull, S.F. & Northover, K.J. (1978), MNRAS, 185, 245.Google Scholar
Canizares, C.R., (1979), Private Communication.Google Scholar
Canizares, C.R., Clark, G.W., Markert, T.H., Berg, C., Smerdira, M., Bardas, P., Schnopper, H., Kalata, K., (1979), In Press, Astrophys. J. Google Scholar
Cavliere, A., and Fusco-Femiano, R., (1976), Astr. Ap., 49, 137.Google Scholar
Cowie, L.L. and Binney, J., (1977), Astrophys. J., 215, 723.Google Scholar
Cowie, L.L. and Perrenod, S.C., (1978), Astrophys. J., 219, 354.Google Scholar
de Young, D.S., (1978), Astrophys. J., 223, 47.Google Scholar
Fabian, A.C., and Nulsen, P.E.J., (1977), Mon. Not. R. astr. Soc., 180, 479.Google Scholar
Gisler, G., and Miley, G.K., (1979), Astr. and Ap., 76, 109.Google Scholar
Gorenstein, P., Fabricant, P., Topka, K., Harnden, F.R. Jr., (1979), Astrophys. J. Google Scholar
Gull, S.F., and Northover, K.J.E., (1975), Mon. Not. R. astr. Soc., 173, 585.CrossRefGoogle Scholar
Gull, S.F., and Northover, K.J.E., (1976), Nature, 263, 572.CrossRefGoogle Scholar
Gunn, J.E. and Gott, J.R., (1972), Astrophys. J., 176, 1.CrossRefGoogle Scholar
Lake, C., and Partridge, R.B., (1977), Nature, 270, 502.Google Scholar
Lea, S., Silk, J., Kellogg, E., and Murray, S., (1973), Astrophys. J., Lett., 184, L105.Google Scholar
Lea, S., (1975), Astrophys. Lett., 16, 141.Google Scholar
Lea, S., (1976), Astrophys. J., 203, 569.Google Scholar
Lea, S., Mason, K.O., Richert, G., Charles, P.A., and Reiglar, G., (1979), Astrophys. J., 227, L67.Google Scholar
Miley, G.K., Perola, G.C., Van der Kruit, P.C., and Van der Laan, H., (1972), Nature, 237, 269.Google Scholar
Mitchell, R.J., Culhane, J.L., Davison, P.J.N., Charles, P.A., Fabian, A.C., (1975), Astrophys. J., 200, L5.Google Scholar
Mitchell, R.J., Culhane, J.L., Davison, P.J.N., and Ives, J.C., (1976), Mon. Not. R. astr. Soc., 175, 29P.Google Scholar
Mitchell, R.J., and Culhane, J.L., (1977), Mon. Not. R. astr. Soc., 178, 75P.Google Scholar
Murray, S.S., (1979), Paper presented at Joint Discussion No. 8 on Extra Galactic High Energy Astrophysics, XVII IAU General Assembly, Montreal, August 14-23.Google Scholar
Mushotzky, R.F., 1979, private communication.Google Scholar
Mushotzky, R.F., Seriemitsos, P.J., Smith, B.W., Boldt, E.A., and Holt, S.S., (1978), Astrophys. J., 225, 21.Google Scholar
Perrenod, S.C., (1978), Astrophys. J., 226, 566.CrossRefGoogle Scholar
Ryle, M., and Windram, M.D., (1968), Mon. Not. R. astr. Soc., 138, 1.Google Scholar
Serlemitsos, P.J., Smith, B.W., Boldt, E.A., Holt, S.S., and Swank, J.H., (1977), Astrophys. J. Lett., 211, L63.Google Scholar
Sunyaev, R.A., and Zel’dovich, Ya.B., (1972), Comm. Space Sci., 4, 173.Google Scholar
Takahara, F., Ikeuchi, S., Shibazaki, N., Hoshi, R., (1976), Prog. Theor. Phys., 56, 1093..Google Scholar
White, S.D., (1976), Mon. Not. R. astr. Soc., 177, 717.Google Scholar
Wolff, R., Mitchell, R.J., Charles, P.A., and Culhane, J.L., (1976), Astrophys. J., 208, 1.Google Scholar
Yahil, A., and Ostriker, J.P., (1973), Astrophys. J., 185, 787.Google Scholar