Helioseismology and Solar Abundances
arXiv:0711.4590 · doi:10.1016/j.physrep.2007.12.002
Abstract
Helioseismology has allowed us to study the structure of the Sun in unprecedented detail. One of the triumphs of the theory of stellar evolution was that helioseismic studies had shown that the structure of solar models is very similar to that of the Sun. However, this agreement has been spoiled by recent revisions of the solar heavy-element abundances. Heavy element abundances determine the opacity of the stellar material and hence, are an important input to stellar model calculations. The models with the new, low abundances do not satisfy helioseismic constraints. We review here how heavy-element abundances affect solar models, how these models are tested with helioseismology, and the impact of the new abundances on standard solar models. We also discuss the attempts made to improve the agreement of the low-abundance models with the Sun and discuss how helioseismology is being used to determine the solar heavy-element abundance. A review of current literature shows that attempts to improve agreement between solar models with low heavy-element abundances and seismic inference have been unsuccessful so far. The low-metallicity models that have the least disagreement with seismic data require changing all input physics to stellar models beyond their acceptable ranges. Seismic determinations of the solar heavy-element abundance yield results that are consistent with the older, higher values of the solar abundance, and hence, no major changes to the inputs to solar models are required to make higher-metallicity solar models consistent with helioseismic data.
To appear in Physics Reports. Large file (1.6M PDF, 3.4M PS), 27 figures
References in corpus (7)
- Instability strips of SPB and beta Cephei stars: the effect of the updated OP opacities and of the metal mixture
- Solar abundances and helioseismology: fine structure spacings and separation ratios of low-degree p modes
- Solar heavy element abundance: constraints from frequency separation ratios of low-degree p modes
- OPserver: interactive online-computations of opacities and radiative accelerations
- Argon Abundances in the Solar Neighborhood: Non-LTE Analysis of Orion Association B-type Stars
- Neon Abundances from a Spitzer/IRS Survey of Wolf-Rayet Stars
- The Abundances of Oxygen and Carbon in the Solar Photosphere