English

Changing the $\nu_{\max}$ Scaling Relation: The Need For a Mean Molecular Weight Term

Solar and Stellar Astrophysics 2017-07-05 v2

Abstract

The scaling relations that relate the average asteroseismic parameters Δν\Delta \nu and νmax\nu_{\max} to the global properties of stars are used quite extensively to determine stellar properties. While the Δν\Delta \nu scaling relation has been examined carefully and the deviations from the relation have been well documented, the νmax\nu_{\max} scaling relation has not been examined as extensively. In this paper we examine the νmax\nu_{\max} scaling relation using a set of stellar models constructed to have a wide range of mass, metallicity, and age. We find that as with Δν\Delta \nu, νmax\nu_{\max} does not follow the simple scaling relation. The most visible deviation is because of a mean molecular weight term and a Γ1\Gamma_1 term that are commonly ignored. The remaining deviation is more difficult to address. We find that the influence of the scaling relation errors on asteroseismically derived values of logg\log g are well within uncertainties. The influence of the errors on mass and radius estimates is small for main sequence and subgiants, but can be quite large for red giants.

Cite

@article{arxiv.1705.03472,
  title  = {Changing the $\nu_{\max}$ Scaling Relation: The Need For a Mean Molecular Weight Term},
  author = {Lucas S. Viani and Sarbani Basu and William J. Chaplin and Guy R. Davies and Yvonne Elsworth},
  journal= {arXiv preprint arXiv:1705.03472},
  year   = {2017}
}

Comments

15 pages, 14 figures, accepted for publication in ApJ

R2 v1 2026-06-22T19:42:04.539Z