English

Prominence formation and ejection in cool stars

Solar and Stellar Astrophysics 2018-02-07 v2

Abstract

The observational signatures of prominences have been detected in single and binary G and K type stars for many years now, but recently this has been extended to the M dwarf regime. Prominences carry away both mass and angular momentum when they are ejected and the impact of this mass on any orbiting planets may be important for the evolution of exoplanetary atmospheres. By means of the classification used in the massive star community, that involves knowledge of two parameters (the co-rotation and Alfv\'en radii, rKr_K and rAr_A), we have determined which cool stars could support prominences. From a model of mechanical support, we have determined that the prominence mass mp/M=(EM/EG)(r/rK)2Fm_p/M_\star=(E_M/E_G)(r_\star/r_K)^2 F where EMB2r3E_MB_\star^2r_\star^3 and EG=GM2/rE_G = GM_\star^2/r_\star are magnetic and gravitational energies and FF is a geometric factor. Our calculated masses and ejection frequencies (typically 1016101710^{16}-10^{17}g and 0.4 d, respectively) are consistent with observations and are sufficient to ensure that an exoplanet orbiting in the habitable zone of an M dwarf could suffer frequent impacts.

Keywords

Cite

@article{arxiv.1712.08191,
  title  = {Prominence formation and ejection in cool stars},
  author = {Carolina Villarreal D'Angelo and Moira Jardine and Victor See},
  journal= {arXiv preprint arXiv:1712.08191},
  year   = {2018}
}
R2 v1 2026-06-22T23:26:41.430Z