English

The past and future evolution of a star like Betelgeuse

Solar and Stellar Astrophysics 2015-06-15 v1

Abstract

We discuss the physics and the evolution of a typical massive star passing through an evolutionary stage similar to that of Betelgeuse. After a brief introduction recalling various observed parameters of Betelgeuse, we discuss the Pre-Main-Sequence phase (PMS), the Main-Sequence (MS) phase, the physics governing the duration of the first crossing of the HR diagram, the red supergiant stage (RSG), the post-red supergiant phases and the final fate of solar metallicity stars with masses between 9 and 25 M_\odot. We examine the impact of different initial rotation and of various prescriptions for the mass loss rates during the red supergiant phase. We show that, whatever the initial rotation rate (chosen between 0 and 0.7×υcrit\times\upsilon_{\rm crit}, υcrit\upsilon_{\rm crit} being the surface equatorial velocity producing a centrifugal acceleration balancing exactly the gravity) and the mass loss rates during the RSG stage (varied between a standard value and 25 times that value), a 15 M_\odot star always ends its lifetime as a RSG and explodes as a type II-P or II-L supernova.

Keywords

Cite

@article{arxiv.1303.1339,
  title  = {The past and future evolution of a star like Betelgeuse},
  author = {Georges Meynet and Lionel Haemmerle and Sylvia Ekstrom and Cyril Georgy and Jose Groh and Andre Maeder},
  journal= {arXiv preprint arXiv:1303.1339},
  year   = {2015}
}

Comments

12 pages, 5 figures, Betelgeuse workshop, November 2012, Paris. To be published in the European Astronomical Society Publications Series, editors: Pierre Kervella, Thibaut Le Bertre & Guy Perrin