The Mass-Activity relationships in M and K dwarfs. I. Stellar parameters of our sample of M and K dwarfs
Eric R. Houdebine, D.J. Mullan, J.G. Doyle, Geoffroy de La Vieuville,, C.J. Butler, F. Paletou

TL;DR
This study develops simple, reliable methods to estimate stellar parameters like temperature and radius for large samples of M and K dwarfs, using empirical color-temperature relations and spectroscopic data.
Contribution
It introduces a practical approach to derive stellar parameters for large star samples based on (R-I)$_C$ color and compiles new temperature data for many stars, including identifying binary systems.
Findings
(R-I)$_C$ color correlates well with effective temperature, with small scatter.
Effective temperatures were derived for approximately 2,351 stars, including 441 with previously unknown T_eff.
21 new spectroscopic binaries and 1 triple system were identified.
Abstract
Empirical correlations between stellar parameters such as rotation or radius and magnetic activity diagnostics require estimates of the effective temperatures and the stellar radii. The aim of this study is to propose simple methods that can be applied to large samples of stars in order to derive estimates of the stellar parameters. Good empirical correlations between Red/Infra-Red colours (e.g. (R-I)) and effective temperatures have been well established for a long time (e.g. Veeder 1974, Bessell 1979, Leggett 1992). The more recent (R-I) colour- correlation using the data of Mann et al. (2015: hereafter M15) and Boyajian et al. (2012: hereafter B12) shows that this colour can be applied as a temperature estimate for large samples of stars. We find that the mean scatter in relative to the (R-I)- relationship of B12 and M15 data is only $\pm…
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