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The influence of mass loss on the evolution of binaries

Published online by Cambridge University Press:  12 April 2016

C. de Loore*
Affiliation:
Astrophysical Institute, Vrije Universiteit Brussel, Belgium

Extract

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Mass loss can affect the evolution of binaries in various ways, during different stages of the evolution.

1. For massive stars stellar wind mass loss will change the masses of the components during their main sequence evolution.

2. During the Roche lobe overflow phase (or tidal interaction phase) matter can leave the system.

3. For low mass stars matter can leave the system during the mass exchange phase and can be stored in envelopes, disks or rings.

4. Sufficiently massive stars(>8-15M0) undergo at the end of their life a supernova explosion, where most of the matter is blown away and a compact object, a neutron star or a black hole can be left.

5. For intermediate stars one of the components can evolve into a degenerate He or CO dwarf; a reverse mass transfer can dump matter on this degenerate dwarf. If the conditions are favorable the white dwarf can explode with loss of matter, and a neutron star can be the result.

6. The chemical abundances in the outer layers change.

Type
Session VIII - Effects of Mass Loss on the Evolution of Binary Stars
Copyright
Copyright © Reidel 1981

References

Appenzeller, I.: 1970, Astron.Astrophys. 5, 355.Google Scholar
Arnett, W.D.: 1978, Astrophys.J. 219,1008.Google Scholar
Barbaro, G., Chiosi, C, Nobili, L.: 1972, Astron.Astrophys. 18,186.Google Scholar
Chiosi, C, Summa, C.:1970,Astrophys.Space Sci. 8,478.Google Scholar
Chiosi, C., Caimmi, R.:1979,Astron.Astrophys. 80,234.Google Scholar
Chiosi, C., Nasi, E., Sreenivasan, S.R.: 1978,Astron.Astrophys. 63,103.Google Scholar
Conti, P.S., Garmany, C.D.: 1981, Astrophys .J. submitted.Google Scholar
Conti, P.S.:1979, IAU Symp.83, “Mass Loss and Evolution of 0-Type Stars”, eds. Conti, P.S and de Loore, C., Reidel, Dordrecht, the NetherlandsCrossRefGoogle Scholar
De Grève, J.P., de Loore, C.,van Dessel, E.L.: 1978,Astrophys.Space Sci. 53, 105.Google Scholar
Doom, C., De Grève, J.P.:1981, preprint.Google Scholar
Firmarli, C., Koenigsberger, G., Bislacchi, F., Ruiz, E., Solar, A. :1979,IAU Symp.83 “Mass Loss and Evolution of 0-Type Stars”, eds. Conti, P.S and de Loore, C,Reidel,Dordrecht,the Netherlands. Google Scholar
Germany, CD., Conti, P.S., Massey, P.: 1980,Astrophys.J. (in press).Google Scholar
Gathier, T., Lamers, H.J.G.L.M.: 1981,Astrophys.J.,submitted.Google Scholar
van den Heuvel, E.P.J., Heise, J.: 1972,Nat.Phys.Sci. 239,67.Google Scholar
van der Hucht, K., Conti, P.S., Lundstrom, J., Stenholm, B.: 1981,Space Sci. Review,preprint.Google Scholar
Hutchings, J.B.: 1976,Astrophys. J. 203,438.Google Scholar
Iben, I Jr.: 1967,Ann.Rev.Astron.Astrophys. 5,571.Google Scholar
Kippenhahn, R., Meyer-Hofmeister, E.: 1977,Astron.Astrophys. 54,539.Google Scholar
Koenigsberger, G., Firmani, C., Bislacchi, G.F.:1980,Rev.Méx.Astron.Astrof., in press.Google Scholar
Kopal, Z.:1959,“Close Binary Systems”,p.125,New York, J. Wiley. Google Scholar
Kuiper, G.P.:1941,Astrophys.J. 93,133.Google Scholar
Lamers, H.J.G.L.M., Paerels, F., de Loore, C.:1980,Astron.Astrophys. 87,68.Google Scholar
de Loore, C., De Grève, J.P., Lamers, H.J .G. L .M.: 1977, Astron.Astrophys. 61, 251.Google Scholar
de Loore, C., De Grève, J. P., Vanbeveren, D.: 1978a,Astron.Astrophys. 67,373.Google Scholar
de Loore, C., De Grève, J.P., Vanbeveren, D.: 1978b,Astron.Astrophys Suppl. 34,363.Google Scholar
de Loore, C.:1981 Proc.5th IAU Reg.Meeting Liège “Variability in Stars and Galaxies, eds.Boury, A and Noels, A.Google Scholar
de Loore, C., De Grève, J.P., De Cuyper, J.P.: 1975,Astrophys.Space Sci. 36, 219.CrossRefGoogle Scholar
Lucy, L.B.:1980,IAU Symp.88,“Close Binary Stars: Observation and Interpretation”, eds. Plavec, M.J,Popper, D.M,Ulrich, R.K, p. 7.Google Scholar
Massey, P.:1981, preprint.Google Scholar
Moffat, A.F.J., Seggewiss, W.:1980,Astron.Astrophys. 86,87.Google Scholar
Moffat, A.F.J., Seggewiss, W.:1979,Astron.Astrophys. 77,128.Google Scholar
Moffat, A.F.J., Isserstedt,J.:Astron.Astrophys.,in press.Google Scholar
Neo, S., Miyaji, S. Nomoto, K., Sugimoto, D.:1977, Pubi.Astron.Soc.Japan 29,249.Google Scholar
Noels, A., Gabriel, M.,Conti, P.S.:1981,preprint.Google Scholar
Pesch, P.,Hiltner, W.A., Brandt, J.C.: 1960,Astrophys.J. 132,513.Google Scholar
Paczynski, B.: 1971,Ann. Rev.Astron.Astrophys. 9,183.Google Scholar
Piotrowski, S.:1965,Bull.Acad.Pol.Sei.Ser.Math.Astron.Phys. 12,419.Google Scholar
Plavec, M., Ulrich, R.K., Polidan, R.S.: 1973,Publ.Astron.Soc.Pacific 85, 769.Google Scholar
Schwarzschild, M., Härm, R.:1959,Astrophys.J.129,637.Google Scholar
Stothers, R., Chin, C.W.:1980,Astrophys.J. submitted. Google Scholar
Tanzi, E.,Tarenghi, M., Panagia, N.: 1980,private communication.Google Scholar
Thomas, H.C.:1977, Ann.Rev.Astron.Astrophys.J.,submitted. Google Scholar
Ulrich,, R.K., Burger, H.L.: 1976.Astrophys.J. 206,509.Google Scholar
Vanbeveren, D.,Packet, W.: 1979 Astron.Astrophys.80,242.Google Scholar
Vanbeveren, D., Conti, P.S.:1980,Astron.Astrophys.88,230.Google Scholar
Vanbeveren, D., De Grève, J.P., van Dessel, E.L., de Loore, C.:1979,Astron. Astrophys. 73,19.Google Scholar
Vanbeveren, D., de Loore, C.:1980,Astron.Astrophys.86,21.Google Scholar
Webbink, R.F.:1979,IAU Coll.49 “Changing Trends in Variable Stars Research”, Hamilton, New Zealand, eds. F.M.Bateson, J.Smak, I.H.Ulrich, p.102.Google Scholar
Webbink, R.F.: 1976 Astrophys.J.209,829.Google Scholar
Webbink, R.F.: 1977a,Astrophys.J. 211,486.Google Scholar
Webbink, R.F.: 1977b,Astrophys.J. 211, 881 Google Scholar
Willis, A.J., Wilson, R.:1978,Monthly Notices Roy.Astron.Soc. 82,55.Google Scholar
Yungelson, L.R.:1973,Sov.Astron. A.J. 16,864.Google Scholar