The APOGEE red-clump catalog: Precise distances, velocities, and high-resolution elemental abundances over a large area of the Milky Way's disk
Jo Bovy (IAS), David L. Nidever, Hans-Walter Rix, L\'eo Girardi, Gail, Zasowski, S. Drew Chojnowski, Jon Holtzman, Courtney Epstein, Peter M., Frinchaboy, Michael R. Hayden, Tha\'ise S. Rodrigues, Steven R. Majewski,, Jennifer A. Johnson, Marc H. Pinsonneault, Dennis Stello

TL;DR
This paper presents a large, precise catalog of red-clump stars in the Milky Way, providing accurate distances, velocities, and elemental abundances to study Galactic structure and dynamics.
Contribution
It introduces a new method for selecting red-clump stars with high accuracy and provides a comprehensive catalog with detailed stellar parameters over a large Galactic volume.
Findings
Distances with 5-10% accuracy for 10,341 stars
Limited azimuthal metallicity variation <= 0.02 dex
Sample extends to about 8 kpc from the Sun
Abstract
The Sloan Digital Sky Survey III's Apache Point Observatory Galactic Evolution Experiment (APOGEE) is a high-resolution near-infrared spectroscopic survey covering all of the major components of the Galaxy, including the dust-obscured regions of the inner Milky Way disk and bulge. Here we present a sample of 10,341 likely red-clump stars (RC) from the first two years of APOGEE operations, selected based on their position in color-metallicity-surface-gravity-effective-temperature space using a new method calibrated using stellar-evolution models and high-quality asteroseismology data. The narrowness of the RC locus in color-metallicity-luminosity space allows us to assign distances to the stars with an accuracy of 5 to 10%. The sample extends to typical distances of about 3 kpc from the Sun, with some stars out to 8 kpc, and spans a volume of approximately 100 kpc^3 over 5 kpc <~ R <~ 14…
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