The Gaia-ESO Survey: metallicity and kinematic trends in the Milky Way bulge
A. Rojas-Arriagada, A. Recio-Blanco, V. Hill, P. de Laverny, M., Schultheis, C. Babusiaux, M. Zoccali, D. Minniti, O. A. Gonzalez, S., Feltzing, G. Gilmore, S. Randich, A. Vallenari, E. J. Alfaro, T. Bensby, A., Bragaglia, E. Flaccomio, A. C. Lanzafame, E. Pancino, R. Smiljanic

TL;DR
This study uses Gaia-ESO survey data to analyze metallicity and kinematic trends in the Milky Way bulge, revealing bimodal metallicity distributions, spatial gradients, and distinct kinematic behaviors of different stellar populations.
Contribution
It provides the first detailed chemo-kinematical analysis of the Galactic bulge using Gaia-ESO data, uncovering spatial variations in metallicity and kinematics.
Findings
Bimodal metallicity distribution in all fields.
A mild metallicity gradient along the minor axis.
Distinct kinematic properties for metal-rich and metal-poor populations.
Abstract
(Abridged) We analyzed the stellar parameters and radial velocities of ~1200 stars in five bulge fields as determined from the Gaia-ESO survey data (iDR1). We use VISTA Variables in The Via Lactea (VVV) photometry to obtain reddening values by using a semi-empirical T_eff-color calibration. From a Gaussian decomposition of the metallicity distribution functions, we unveil a clear bimodality in all fields, with the relative size of components depending of the specific position on the sky. In agreement with some previous studies, we find a mild gradient along the minor axis (-0.05 dex/deg between b=-6 and b=-10) that arises from the varying proportion of metal-rich and metal-poor components. The number of metal-rich stars fades in favor of the metal-poor stars with increasing b. The K-magnitude distribution of the metal-rich population splits into two peaks for two of the analyzed fields…
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