The radius discrepancy in low mass stars: single vs. binaries
arXiv:1308.5558 · doi:10.1088/0004-637X/776/2/87
Abstract
A long-standing issue in the theory of low mass stars is the discrepancy between predicted and observed radii and effective temperatures. In spite of the increasing availability of very precise radius determinations from eclipsing binaries and interferometric measurements of radii of single stars, there is no unanimous consensus on the extent (or even the existence) of the discrepancy and on its connection with other stellar properties (e.g. metallicity, magnetic activity). We investigate the radius discrepancy phenomenon using the best data currently available (accuracy about 5%). We have constructed a grid of stellar models covering the entire range of low mass stars (0.1-1.25 M_sun) and various choices of the metallicity and of the mixing length parameter α. We used an improved version of the Yale Rotational stellar Evolution Code (YREC), implementing surface boundary conditions based on the most up-to-date PHOENIX atmosphere models. Our models are in good agreement with others in the literature and improve and extend the low mass end of the Yale-Yonsei isochrones. Our calculations include rotation-related quantities, such as moments of inertia and convective turnover time scales, useful in studies of magnetic activity and rotational evolution of solar-like stars. Consistently with previous works, we find that both binaries and single stars have radii inflated by about 3% with respect to the theoretical models; among binaries, the components of short orbital period systems are found to be the most deviant. We conclude that both binaries and single stars are comparably affected by the radius discrepancy phenomenon.
Accepted for publication in the Astrophysical Journal
References in corpus (11)
- The Dartmouth Stellar Evolution Database
- The Solar Neighborhood XVII: Parallax Results from the CTIOPI 0.9m Program -- Twenty New Members of the RECONS 10 Parsec Sample
- Evolution of low-mass star and brown dwarf eclipsing binaries
- A Bitter Pill: The Primordial Lithium Problem Worsens
- KOI-126: A Triply-Eclipsing Hierarchical Triple with Two Low-Mass Stars
- YREC: The Yale Rotating Stellar Evolution Code
- First Results from the CHARA Array. IV. The Interferometric Radii of Low-Mass Stars
- Near and Mid-IR Photometry of the Pleiades, and a New List of Substellar Candidate Members
- Reevaluating the Mass-Radius Relation for Low-Mass, Main Sequence Stars
- Self-Consistent Magnetic Stellar Evolution Models of the Detached, Solar-Type Eclipsing Binary EF Aquarii
- A synoptic comparison of the MHD and the OPAL equations of state
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