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On the Formation of Elliptical Galaxies

Published online by Cambridge University Press:  14 August 2015

J. R. Gott III*
Affiliation:
California Institute of Technology, Dept. of Astronomy, Pasadena, Calif., U.S.A.

Abstract

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Simple collapse and violent relaxation models produce sharply cut off envelopes with ϱ(r) ∝ r–4, whereas actual elliptical galaxies have more extended envelopes approximately given by ϱ(r) ∝ r–3 as implied by Hubble's Law. Numerical models are presented, showing that when cosmological infall effects are included, galaxies are produced with more extended envelopes having a ϱ(r) ∝ r–2.8 dependence in excellent agreement with Hubble's Law. We have also computed a realistic rotating model of an E5 galaxy which includes infall effects and where the angular momentum of the galaxy is gained through tidal interactions with neighboring protogalaxies. The envelope displays a Hubble dependence but at great distances shows a cutoff due to the tidal effects. The model is compared to the E5 galaxy NGC 4697 and provides an outstandingly good fit to the observations. Except for simple scaling, this excellent fit is produced without the use of any free fitting parameters.

Type
Part II/Flattened Systems
Copyright
Copyright © Reidel 1975 

References

Aarseth, S. J.: 1973, Cited in Oemler, A. 1973.Google Scholar
Gott, J. R. III and Gunn, J. E.: 1971. Astrophys. J. Letters 169, L13.CrossRefGoogle Scholar
Gott, J. R. III: 1973, Astrophys. J. 186, 481.Google Scholar
Gott, J. R. III, Gunn, J. E., Schramm, D. N., and Tinsley, B. M.: 1974, Astrophys. J. (in press).Google Scholar
Gott, J. R. III: 1975, submitted for publication.Google Scholar
Gunn, J. E. and Gott, J. R. III: 1972, Astrophys. J. 176, 1.CrossRefGoogle Scholar
Hénon, M.: 1964, Ann. Astrophys. 27, 83.Google Scholar
Hubble, E.: 1930, Astrophys. J. 71, 231.Google Scholar
King, I. R.: 1974, private communication.Google Scholar
Larson, R. B.: 1974, Monthly Notices Roy. Astron. Soc. 166, 585.CrossRefGoogle Scholar
Lynden-Bell, D.: 1967, Monthly Notices Roy. Astron. Soc. 136, 101.Google Scholar
Mathews, W. G. and Baker, J. C.: 1971, Astrophys. J. 170, 241.CrossRefGoogle Scholar
Oemler, A.: 1973, , .Google Scholar
Ostriker, J. P. and Peebles, P. J. E.: 1973, Astrophys. J. 186, 467.CrossRefGoogle Scholar
Ostriker, J. P. and Thuan, T. X.: 1974, in press.Google Scholar
Peebles, P. J. E. and Dicke, R. H.: 1968, Astrophys. J. 154, 891.CrossRefGoogle Scholar
Peebles, P. J. E.: 1970, Astron. J. 75, 13.CrossRefGoogle Scholar
Peebles, P. J. E.: 1971, Astron. Astrophys. 11, 377.Google Scholar
Peebles, P. J. E.: 1974, Astrophys. J. Letters 189, L51.Google Scholar
Press, W. H. and Schechter, P.: 1974, Astrophys. J. 187, 425.Google Scholar
Spinrad, H., Smith, H. E., and Taylor, D. J.: 1972, Astrophys. J. 175, 649.CrossRefGoogle Scholar
Spitzer, L.: 1968, Diffuse Matter in Space, Wiley, New York.Google Scholar
Tremaine, S., Ostriker, J. P., and Spitzer, L.: 1974, in press.Google Scholar
Wilson, C. P.: 1973, , .Google Scholar