Ledoux's convection criterion in evolution and asteroseismology of massive stars

Lebreton, Y.; Montalbán, J.; Godart, M.; Morel, P.; Noels, A.; Dupret, M.-A.
Referencia bibliográfica

"Communications in Asteroseismology, Vol.158, p. 277 Proceedings of "38th Liege International Astrophysical Colloquium: Evolution and Pulsation of Massive Stars on the Main Sequence and Close to it", held on July 7-11 2008, edited by Arlette Noels, Conny Aerts, Josefina Montalban, Andrea Miglio and Maryline Briquet."

Fecha de publicación:
7
2009
Número de autores
6
Número de autores del IAC
0
Número de citas
9
Número de citas referidas
5
Descripción
Saio et al. (2006) have shown that the presence of an intermediate convective zone (ICZ) in post-main sequence models could prevent the propagation of g-modes in the radiative interior and hence avoid the corresponding radiative damping. The development of such a convective region highly depends on the structure of the star in the μ-gradient region surrounding the convective core during the main sequence phase. In particular,the development of this ICZ depends on physical processes such as mass loss, overshooting (Chiosi & Maeder 1986, Chiosi et al. 1992, see also Godart et al., 2009) and convective instability criterion (Schwarzschild's or Ledoux's criteria). In this paper we study the consequences of adopting the Ledoux's criterion on the evolution of the convective regions in massive stars (15 and 20 M_{⊙}), and on the pulsation spectrum of these new B-type variables (also called SPBsg).