English

Non-linear excitation of low frequency modes by overstable convective modes in rotating stars

Solar and Stellar Astrophysics 2022-06-01 v1

Abstract

We discuss non-linear excitation and amplitude saturation of gg-modes, rr-modes and overstable convective (OsC) modes in early type main sequence stars, taking account of the effects of three-mode couplings on amplitude evolutions. OsC modes are rotationally stabilized convective modes in the convective core and they resonantly excite low frequency gg-modes to obtain large amplitudes in the envelope when the rotation rate of the core is larger than critical rates. We use, for a network of three-mode couplings, amplitude equations governing the time evolution of the mode amplitudes where each of three-mode couplings is assumed to occur between two stable modes and one unstable mode. Assuming that the unstable modes in the couplings are OsC modes in the core and the stable modes are gg- and rr-modes in the envelope, we integrate the amplitude equations to see how the gg- and rr-modes are non-linearly excited by the OsC modes and whether or not the amplitude evolutions tend toward a state of finite amplitudes. We find that the non-linear three-mode couplings do excite low frequency gg- and rr-modes but they are not necessarily effective to achieve amplitude saturation since the three-mode couplings between the OsC modes with large growth rates and gg- and rr-modes with small damping rates tend to destabilize amplitude evolutions.

Keywords

Cite

@article{arxiv.2204.09895,
  title  = {Non-linear excitation of low frequency modes by overstable convective modes in rotating stars},
  author = {Umin Lee},
  journal= {arXiv preprint arXiv:2204.09895},
  year   = {2022}
}

Comments

14 pages, 13 figures, accepted for publication in MNRAS