Direct Measurements of Giant Star Effective Temperatures and Linear Radii: Calibration Against Spectral Types and V-K Color
arXiv:2107.09205 · doi:10.3847/1538-4357/ac1687
Abstract
We calculate directly determined values for effective temperature () and radius () for 191 giant stars based upon high resolution angular size measurements from optical interferometry at the Palomar Testbed Interferometer. Narrow- to wide-band photometry data for the giants are used to establish bolometric fluxes and luminosities through spectral energy distribution fitting, which allow for homogeneously establishing an assessment of spectral type and dereddened color; these two parameters are used as calibration indices for establishing trends in and . Spectral types range from G0III to M7.75III, from 1.9 to 8.5. For the range, median uncertainties in the fit of effective temperature versus color are found to be less than 50K; over this range, drops from 5050K to 3225K. Linear sizes are found to be largely constant at 11 from G0III to K0III, increasing linearly with subtype to 50 at K5III, and then further increasing linearly to 150 by M8III. Three examples of the utility of this data set are presented: first, a fully empirical Hertzsprung-Russell Diagram is constructed and examined against stellar evolution models; second, values for stellar mass are inferred based on measures of and literature values for . Finally, an improved calibration of an angular size prediction tool, based upon and values for a star, is presented.
310 pages, 16 figures, 21 tables, accepted to be published in The Astrophysical Journal
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