Metallicity Distribution Functions, Radial Velocities, and Alpha Element Abundances in Three Off-Axis Bulge Fields
Christian I. Johnson, R. Michael Rich, Chiaki Kobayashi, Andrea, Kunder, Catherine A. Pilachowski, Andreas Koch, and Roberto De Propris

TL;DR
This study analyzes the metallicity distribution, radial velocities, and alpha-element abundances of 264 RGB stars in three off-axis Galactic bulge fields, revealing metallicity gradients and consistent alpha-element trends across fields.
Contribution
It provides new detailed chemical and kinematic data for off-axis bulge fields, expanding understanding of bulge composition and structure beyond the minor axis.
Findings
Metallicity spans from -1.5 to +0.5 in [Fe/H].
Median [Fe/H] declines with Galactic latitude, indicating a vertical gradient.
Alpha-element trends are consistent across fields and match previous bulge studies.
Abstract
We present radial velocities and chemical abundance ratios of [Fe/H], [O/Fe], [Si/Fe], and [Ca/Fe] for 264 red giant branch (RGB) stars in three Galactic bulge off-axis fields located near (l,b)=(-5.5,-7), (-4,-9), and (+8.5,+9). The results are based on equivalent width and spectrum synthesis analyses of moderate resolution (R~18,000), high signal-to-noise ratio (S/N~75-300) spectra obtained with the Hydra spectrographs on the Blanco 4m and WIYN 3.5m telescopes. The targets were selected from the blue side of the giant branch to avoid cool stars that would be strongly affected by CN and TiO; however, a comparison of the color-metallicity distribution in literature samples suggests our selection of bluer targets should not present a significant bias against metal-rich stars. We find a full range in metallicity that spans [Fe/H]\approx-1.5 to +0.5, and that, in accordance with the…
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