The ASAS-SN Catalog of Variable Stars IX: The Spectroscopic Properties of Galactic Variable Stars
T. Jayasinghe, C. S. Kochanek, K. Z. Stanek, B. J. Shappee, T. W. -S., Holoien, Todd A. Thompson, J. L. Prieto, Subo Dong, M. Pawlak, O. Pejcha, G., Pojmanski, S. Otero, N. Hurst, D. Will

TL;DR
This paper presents a comprehensive catalog of over 426,000 variable stars identified by ASAS-SN, analyzing their spectroscopic properties using data from multiple surveys to reveal correlations between physical characteristics and variability types.
Contribution
The study provides the first large-scale spectroscopic analysis of a vast sample of variable stars, uncovering new relationships between metallicity, rotation, and pulsation periods.
Findings
Metal-poor eclipsing binaries have shorter orbital periods than metal-rich ones.
Most rotating giants exhibit high rotational velocities or NUV excesses.
Semi-regular variables are generally lower metallicity and show Mg and N enrichment.
Abstract
The All-Sky Automated Survey for Supernovae (ASAS-SN) provides long baseline ( yrs) band light curves for sources brighter than V mag across the whole sky. We produced V-band light curves for a total of million sources and systematically searched these sources for variability. We identified variables, including new discoveries. Most () of our discoveries are in the Southern hemisphere. Here we use spectroscopic information from LAMOST, GALAH, RAVE, and APOGEE to study the physical and chemical properties of these variables. We find that metal-poor eclipsing binaries have orbital periods that are shorter than metal-rich systems at fixed temperature. We identified rotational variables on the main-sequence, red giant branch and the red clump. A substantial fraction () of the rotating giants…
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