An Ultraviolet-Optical Color-Metallicity relation for Red Clump Stars using GALEX and Gaia
Abstract
Although core helium-burning red clump (RC) stars are faint at ultraviolet wavelengths, their ultraviolet-optical color is a unique and accessible probe of their physical properties. Using data from the GALEX All Sky Imaging Survey, Gaia Data Release 2 and the SDSS APOGEE DR14 survey, we find that spectroscopic metallicity is strongly correlated with the location of an RC star in the UV-optical color magnitude diagram. The RC has a wide spread in (NUV - G) color, over 4 magnitudes, compared to a 0.7-magnitude range in (G - G). We propose a photometric, dust-corrected, ultraviolet-optical (NUV - G) color-metallicity [Fe/H] relation using a sample of 5,175 RC stars from APOGEE. We show that this relation has a scatter of 0.28 dex and is easier to obtain for large, wide-field samples than spectroscopic metallicities. Importantly, the effect may be comparable to the spread in RC color attributed to extinction in other studies.
Keywords
Cite
@article{arxiv.1805.03236,
title = {An Ultraviolet-Optical Color-Metallicity relation for Red Clump Stars using GALEX and Gaia},
author = {Steven Mohammed and David Schiminovich and Keith Hawkins and Benjamin Johnson and Dun Wang and David W. Hogg},
journal= {arXiv preprint arXiv:1805.03236},
year = {2019}
}
Comments
8 pages, 9 figures, 1 table, submitted to ApJ