Constraining the structure and formation of the Galactic bulge from a field in its outskirts. FLAMES-GIRAFFE spectra of about 400 red giants around (l,b)=(0{\deg},-10{\deg})
Stefan Uttenthaler (1), Mathias Schultheis (2,3), David. M. Nataf (4),, Annie C. Robin (2), Thomas Lebzelter (1), B. Chen (2) ((1) University of, Vienna, Department of Astrophysics, Austria, (2) Institut Utinam,, Universit\'e de Franche-Comt\'e, Besan\c{c}on, France

TL;DR
This study analyzes the metallicity and kinematics of 401 red giants in the Milky Way's outer bulge, revealing two distinct stellar populations with implications for bulge formation models.
Contribution
It provides new observational constraints on the Galactic bulge's structure by characterizing its two stellar populations and comparing findings with galaxy formation models.
Findings
Identification of a metal-rich population at [M/H] ~+0.3 with low velocity dispersion.
Detection of a metal-poor population at [M/H] ~-0.6 with high velocity dispersion.
Confirmation of the decrease in alpha-element over-abundance with increasing metallicity.
Abstract
The presence of two stellar populations in the Milky Way bulge has been reported recently. We aim at studying the abundances and kinematics of stars in the outer bulge, thereby providing additional constraints on models of its formation. Spectra of 401 red giant stars in a field at (l,b)=(0{\deg},-10{\deg}) were obtained with FLAMES at the VLT. Stars of luminosities down to below the two bulge red clumps (RCs) are included. From these spectra we measure general metallicities, abundances of Fe and the alpha-elements, and radial velocities (RV) of the stars. These measurements as well as photometric data are compared to simulations with the Besancon and TRILEGAL models of the Galaxy. We confirm the presence of two populations among our sample stars: i) a metal-rich one at [M/H] ~+0.3, comprising about 30% of the sample, with low RV dispersion and low alpha-abundance, and ii) a metal-poor…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astrophysics and Star Formation Studies
