Chemical evolution of the inner 2 degrees of the Milky Way bulge: [alpha/Fe] trends and metallicity gradients
N. Ryde, M. Schultheis, V. Grieco, F. Matteucci, R. M. Rich, S., Uttenthaler

TL;DR
This study investigates the chemical composition and metallicity gradients in the inner 2 degrees of the Milky Way bulge, revealing a homogeneous alpha-abundance trend and a potential metallicity gradient towards the Galactic center.
Contribution
First detailed spectral analysis connecting the Galactic Center and Bulge using high-resolution spectra of M-giants, revealing homogeneous alpha-abundance trends and insights into metallicity distribution.
Findings
No alpha/Fe gradient into the center, indicating a homogeneous enrichment history.
Metallicity increases closer to the Galactic plane, suggesting a possible gradient.
Galactic Center shares similar chemical properties with the Bulge, implying a common formation history.
Abstract
The structure, formation, and evolution of the Milky Way bulge is a matter of debate. Important diagnostics for discriminating between bulge models include alpha-abundance trends with metallicity, and spatial abundance and metallicity gradients. Due to the severe optical extinction in the inner Bulge region, only a few detailed investigations have been performed of this region. Here we aim at investigating the inner 2 degrees by observing the [alpha/Fe] element trends versus metallicity, and by trying to derive the metallicity gradient. [alpha/Fe] and metallicities have been determined by spectral synthesis of 2 micron spectra observed with VLT/CRIRES of 28 M-giants, lying along the Southern minor axis at (l,b)=(0,0), (0,-1), and (0,-2). VLT/ISAAC spectra are used to determine the effective temperature of the stars. We present the first connection between the Galactic Center and the…
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