Chemical Characterization of the Inner Galactic bulge:North-South Symmetry
G. Nandakumar (1), N. Ryde (2), M. Schultheis (1), B. Thorsbro (2), H., J\"onsson (2), P. S. Barklem (3), R. M. Rich (4), F. Fragkoudi (5,6) ((1), OCA, (2) Lund Observatory, (3) Uppsala University, (4) UCLA, (5) MPIA, Garching, (6) GEPI)

TL;DR
This study used high-resolution infrared spectroscopy to analyze 72 M giants in the inner Galactic bulge, revealing a bimodal metallicity distribution, chemical symmetry between North and South, and trends consistent with outer bulge evolution.
Contribution
It provides the first detailed chemical characterization of the inner bulge using homogeneous high-resolution IR spectra, highlighting North-South symmetry and bimodal metallicity distribution.
Findings
Bimodal metallicity distribution with peaks at +0.3 and -0.5 dex.
No significant chemical differences between North and South fields.
Chemical abundance trends align with outer bulge evolution models.
Abstract
While the number of stars in the Galactic bulge with detailed chemical abundance measurements is increasingly rapidly, the inner Galactic bulge ( |b| < 2) remains poorly studied, due to heavy interstellar absorption and photometric crowding. We have carried out a high-resolution IR spectroscopic study of 72 M giants in the inner bulge using the CRIRES (ESO/VLT) facility. Our spectra cover the wavelength range of 2.0818 - 2.1444 m with the resolution of R50,000 and have signal-to-noise ratio of 50 - 100. Our stars are located along the bulge minor axis at l = 0, b = 0, 1, 2 and +3, selected with the aim of investigating any North-South asymmetries in the metallicity distribution function and composition, and comparing them to the outer bulge fields. Our sample was analysed in a homogeneous way using the most…
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