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Mass-radius relation of low and very low-mass stars revisited with the VLTI

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arxiv 0906.0602 v1 pith:7DKICCJD submitted 2009-06-02 astro-ph.SR

classification astro-ph.SR
keywords radiistarsdwarfseclipsingverywellactiveinterferometry
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We measured the radii of 7 low and very low-mass stars using long baseline interferometry with the VLTI interferometer and its VINCI and AMBER near-infrared recombiners. We use these new data, together with literature measurements, to examine the luminosity- radius and mass-radius relations for K and M dwarfs. The precision of the new interferometric radii now competes with what can be obtained for double-lined eclipsing binaries. Interferometry provides access to much less active stars, as well as to stars with much better measured distances and luminosities, and therefore complements the information obtained from eclipsing systems. The radii of magnetically quiet late-K to M dwarfs match the predictions of stellar evolution models very well, providing direct confirmation that magnetic activity explains the discrepancy that was recently found for magnetically active eclipsing systems. The radii of the early K dwarfs are well reproduced for a mixing length parameter that approaches the solar value, as qualitatively expected.

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  1. Diameters and Temperatures VII: High-angular resolution measurements of Solar-type stars with the CHARA Array

    astro-ph.SR 2026-08 accept novelty 4.0 of 10

    New interferometric measurements give roughly 1% radius and 1.5% temperature uncertainties for 27 nearby solar-type stars, anchoring stellar models and exoplanet host characterization.

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