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Stellar Mixing from Galactic and Magellanic Cloud Planetary Nebulae Abundances

Published online by Cambridge University Press:  19 July 2016

R. E. S. Clegg*
Affiliation:
Royal Greenwich Observatory Madingley Road Cambridge CB3 OEZ, UK

Abstract

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The mixing and nucleosynthetic processes which occur in the main-sequence and red giant stages of evolution and which can affect measured PN abundances are discussed. It is suggested that samples of planetary nebulae contain a sufficient range of progenitor stars' initial metallicities, angular momenta, binarity, etc. so as to explain the large scatter always seen in abundance diagrams for PN samples. CNO abundances in the Galactic disk and in the Magellanic Clouds are reviewed. New results for nebular abundances and central star properties in the Clouds are given. The current red giant population in the Clouds mix out more 12C per star than their Galactic disk counterparts.

Type
The Planetary Nebulae
Copyright
Copyright © Kluwer 1991 

References

Aller, L.H. & Czyzak, S.J. 1983. Ap. J. Suppl. 51, 211.CrossRefGoogle Scholar
Aller, L.H. & Keyes, C.D. 1987. Ap. J. Suppl. 65, 405.CrossRefGoogle Scholar
Barker, T. 1987. Ap. J. 322, 922.CrossRefGoogle Scholar
Barlow, M.J. 1989. IAU Symp. 131, ed. Torres-Peimbert, S., p. 319.Google Scholar
Barlow, M.J. 1990. Proc. IAU Symp. 148 , in press.CrossRefGoogle Scholar
Becker, S.A. & Iben, I. 1979. Ap. J. 232, 831.CrossRefGoogle Scholar
Becker, S.A. & Iben, I. 1980. Ap. J. 237, 111.CrossRefGoogle Scholar
Clegg, R.E.S. 1989. IAU Symp. 131, ed. Torres-Peimbert, S., p139.Google Scholar
Clegg, R.E.S. 1990. From Miras to Planetary Nebulae: Which Path for Stellar Evolution? , eds. Omont, A. & Mennessier, M-O. (Editions Frontieres), p. 368.Google Scholar
Dinerstein, H.L., Lester, D.F. & Werner, M. 1985. Ap. J. 291, 561.CrossRefGoogle Scholar
Dufour, R.J. 1984. IAU Symp. 108, p. 353.Google Scholar
Harrington, J.P., Monk, D.J. & Clegg, R.E.S. 1988. Ap. J. 231, 577.Google Scholar
Henry, R.B.C. 1990. Ap. J. 356, 229.CrossRefGoogle Scholar
Henry, R.B.C., Leibert, J. & Boroson, T.A. 1989. Ap. J. 339, 872.CrossRefGoogle Scholar
Hoare, M.G. 1990. Mon. Not. R. Astr. Soc. 244, 193.Google Scholar
Hoare, M.G. & Clegg, R.E.S. 1988. Mon. Not. R. Astr. Soc. 235, 1049.CrossRefGoogle Scholar
Hollowell, D. & Iben, I. 1989. Ap. J. 340, 966.CrossRefGoogle Scholar
Iben, I. & Renzini, A. 1983. Ann. Rev. Astr. Astrophys. 21, 271.Google Scholar
Iben, I. & Truran, J.W. 1978. Ap. J. 220, 980.CrossRefGoogle Scholar
Iben, I., Kaler, J.B., Truran, J.W. & Renzini, A. 1983. Ap. J. 264, 605.CrossRefGoogle Scholar
Jenkins, E.B. 1987. In Interstellar Processes , eds. Hollenbach, D.J. & Thronson, H.A. Google Scholar
Kaler, J.B. 1985. Ann. Rev. Astr. Astrophys. 23, 89.CrossRefGoogle Scholar
Kaler, J.B. 1986. Ap. J. 308, 322.CrossRefGoogle Scholar
Kaler, J.B. & Jacoby, G.H. 1989. Ap. J. 345, 871.CrossRefGoogle Scholar
Kaler, J.B. & Jacoby, G.H. 1990. Preprint.Google Scholar
Kaler, J.B., Shaw, R.A. & Kwitter, K.B. 1990. Ap. J. 359, 392.CrossRefGoogle Scholar
Lambert, D.L., Gustafsson, B., Eriksson, K. & Hinkle, K. 1986. Ap. J. Suppl. 62, 373.CrossRefGoogle Scholar
Lattanzio, J. 1989. In Evolution of Peculiar Red Giants , eds. Johnson, H. & Zuckerman, B. Google Scholar
Manchado, A. & Pottasch, S.R. 1989. Astron. Astrophys. 222, 219.Google Scholar
Middlemass, D., Clegg, R.E.S. & Walsh, J.R. 1989. Mon. Not. R. Astr. Soc. 239, 1.CrossRefGoogle Scholar
Middlemass, D., Clegg, R.E.S., Walsh, J.R. & Harrington, J.P. 1990. Mon. Not. R. Astr. Soc. , submitted.Google Scholar
Monk, D.J., Barlow, M.J. & Clegg, R.E.S. 1988. Mon. Not. R. Astr. Soc. 234, 583.CrossRefGoogle Scholar
Peimbert, M. 1967. Ap. J. 150, 825.CrossRefGoogle Scholar
Peimbert, M. 1978. IAU Symp. 76, ed. Terzian, Y., p. 215.Google Scholar
Peimbert, M. 1990. Reports on Progress in Physics , in press.Google Scholar
Peimbert, M. & Torres-Peimbert, S., 1987a. Rev. Mex. Astr. Astrof. , 14, 540.Google Scholar
Peimbert, M. & Torres-Peimbert, S., 1987b. Rev. Mex. Astr. Astrof. , 15, 117.Google Scholar
Renzini, A. & Voli, M. 1981. Astron. Astrophys. 94, 175.Google Scholar
Rubin, R.H. 1969. Ap. J. 155, 841.CrossRefGoogle Scholar
Scalo, J.M. 1981. In Physical Processes in Red Giants , eds. Iben, I. & Renzini, A., p. 77.Google Scholar
Smith, G.H. 1987. Publ. Astron. Soc. Pacific 99, 67.CrossRefGoogle Scholar
Smith, V.V. & Lambert, D.L. 1990. Ap. J. Suppl. 72, 387.CrossRefGoogle Scholar
Stasinska, G. & Tylenda, R. 1990. Astron. Astrophys. , in press.Google Scholar
Sweigert, A.V. & Mengel, J.G. 1979. Ap. J. 229, 624.CrossRefGoogle Scholar
Torres-Peimbert, S. & Peimbert, M., 1977. Rev. Mex. Astr. Astrof. , 2, 181.Google Scholar
Walton, N.A., Barlow, M.J., Monk, D.J. & Clegg, R.E.S. 1990. IAU Symp 148 , in press.CrossRefGoogle Scholar
Wood, P.R. 1981. See Scalo, 1981, page 205.Google Scholar