Searching for metal-deficient emission-line galaxy candidates: the final sample of the SDSS DR12 galaxies
N. G. Guseva (1,2), Y. I. Izotov (1,2), K. J. Fricke (1,3), C. Henkel, (1,4) ((1) Max-Planck-Institut fuer Radioastronomie, Bonn, Germany, (2) Main, Astronomical Observatory, Kyiv, Ukraine, (3) Institut fuer Astrophysik,, Goettingen Universitat, Goettingen, Germany

TL;DR
This study identifies and analyzes a large sample of metal-deficient dwarf galaxies from SDSS DR12, discovering new extremely metal-deficient candidates and exploring their properties to understand early galaxy evolution.
Contribution
The paper presents a new sample of 287 low-metallicity galaxy candidates, including 3 newly identified XMDs, using spectroscopic methods and compares their properties to known galaxy relations.
Findings
Discovered 3 new XMD galaxy candidates.
Approximately 60% of known XMDs were found in this study.
Low-metallicity galaxies deviate from standard metallicity relations, resembling high-redshift galaxies.
Abstract
We present a spectroscopic study of metal-deficient dwarf galaxy candidates, selected from the SDSS DR12. The oxygen abundances were derived using the direct method in galaxies with the electron temperature-sensitive emission line [OIII]4363A measured with an accuracy better than 30%. The oxygen abundances for the remaining galaxies with larger uncertainties of the [OIII]4363A line fluxes were calculated using a strong-line semi-empirical method by Izotov and Thuan. The resulting sample consists of 287 low-metallicity candidates with oxygen abundances below 12+logO/H=7.65 including 23 extremely metal-deficient (XMD) candidates with 12+log O/H<7.35. Ten out of sixteen XMDs known so far (or ~60%) have been discovered by our team using the direct method. Three XMDs were found in the present study. We study relations between global parameters of low-metallicity galaxies, including absolute…
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