Hostname: page-component-848d4c4894-x24gv Total loading time: 0 Render date: 2024-06-12T13:56:55.154Z Has data issue: false hasContentIssue false

Stellar evolution including diffusion and matter flow induced by mass-loss

Published online by Cambridge University Press:  19 December 2013

O. Richard
Affiliation:
LUPM, Université Montpellier II, CNRS, cc072, Place E. Bataillon, 34095 Montpellier Cedex, France
M. Vick
Affiliation:
LUPM, Université Montpellier II, CNRS, cc072, Place E. Bataillon, 34095 Montpellier Cedex, France Département de Physique, Université de Montréal, Montréal, Québec, H3C 3J7, Canada
Get access

Abstract

It is clear that in order to explain many observed stellar phenomenae, atomic diffusion must be included in stellar models. Observed surface abundances allow us to constrain other transport pro- cesses which compete with atomic diffusion. We will focus on the effect of the flow of matter induced by mass-loss in stellar models.

Type
Research Article
Copyright
© EAS, EDP Sciences, 2013

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Abbott, D.C., 1982, ApJ, 259, 282CrossRef
Alecian, E., Wade, G.A., Catala, C., et al., 2009, MNRAS, 400, 354CrossRef
Alecian, G., 1996, A&A, 310, 872
Bertin, P., Lamers, H.J.G.L.M., Vidal-Madjar, A., Ferlet, R., & Lallement, R., 1995, A&A, 302, 899
Brown, A., Veale, A., Judge, P., Bookbinder, J.A., & Hubeny, I., 1990, ApJ, 361, 220CrossRef
Gruyters, P., Korn, A.J., Richard, O., et al., 2013, A&A, 555, A31
Herbig, G.H., 1960, ApJS, 4, 337CrossRef
Hu, H., Tout, C.A., Glebbeek, E., & Dupret, M.-A., 2011, MNRAS, 418, 195CrossRef
Korn, A.J., Grundahl, F., Richard, O., et al., 2006, Nature, 442, 657CrossRef
Korn, A.J., Grundahl, F., Richard, O., et al., 2007, ApJ, 671, 402CrossRef
Landstreet, J.D., 2011, A&A, 528, A132
Lanz, T., & Catala, C., 1992, A&A, 257, 663
Michaud, G., 1970, ApJ, 160, 641CrossRef
Michaud, G., & Charland, Y., 1986, ApJ, 311, 326CrossRef
Michaud, G., Richer, J., & Richard, O., 2005, ApJ, 623, 442CrossRef
Michaud, G., Richer, J., & Richard, O., 2007, ApJ, 670, 1178CrossRef
Michaud, G., Richer, J., & Richard, O., 2008, ApJ, 675, 1223CrossRef
Michaud, G., Richer, J., & Richard, O., 2011a, A&A, 529, A60
Michaud, G., Richer, J., & Vick, M., 2011b, A&A, 534, A18
Michaud, G., Vauclair, G., & Vauclair, S., 1983, ApJ, 267, 256CrossRef
Nordlander, T., Korn, A.J., Richard, O., & Lind, K., 2012, ApJ, 753, 48CrossRef
Parker, E.N., 1960, ApJ, 132, 821CrossRef
Peterson, R.C., & Schrijver, C.J., 2001, ed. Garcia Lopez, R.J., Rebolo, R. & Zapaterio Osorio, M.R., 11th Cambridge Workshop on Cool Stars, Stellar Systems and the Sun, Astron. Soc. Pac. Conf. Ser., 223, 300
Richard, O., Michaud, G., & Richer, J., 2001, ApJ, 558, 377CrossRef
Richard, O., Michaud, G., & Richer, J., 2005, ApJ, 619, 538CrossRef
Richer, J., Michaud, G., & Turcotte, S., 2000, ApJ, 529, 338CrossRef
Spite, F., & Spite, M., 1982, A&A, 115, 357
Takeda, Y., & Takada-Hidai, M., 2011, PASJ, 63, 547
Théado, S., Vauclair, S., Alecian, G., & LeBlanc, F., 2009, ApJ, 704, 1262CrossRef
Théado, S., Vauclair, S., Castro, M., Charpinet, S., & Dolez, N., 2005a, A&A, 437, 553
Théado, S., Vauclair, S., & Cunha, M.S., 2005b, A&A, 443, 627
Turcotte, S., Richer, J., & Michaud, G., 1998, ApJ, 504, 559CrossRef
Turcotte, S., Richer, J., Michaud, G., & Christensen-Dalsgaard, J., 2000, A&A, 360, 603
Vauclair, S., & Charbonnel, C., 1995, A&A, 295, 715
Vauclair, S., & Théado, S., 2004, A&A, 425, 179
Vauclair, S., & Théado, S., 2012, ApJ, 753, 49CrossRef
Vick, M., Michaud, G., Richer, J., & Richard, O., 2010, A&A, 521, A62
Vick, M., Michaud, G., Richer, J., & Richard, O., 2011, A&A, 526, A37
Vick, M., Michaud, G., Richer, J., & Richard, O., 2013, A&A, 552, A131
Wade, G.A., Drouin, D., Bagnulo, S., et al., 2005, A&A, 442, L31