Chemical abundances and radial velocities in the extremely metal-poor galaxy DDO 68
F. Annibali (1), V. La Torre (2), M. Tosi (1), C. Nipoti (2), F., Cusano (1), A. Aloisi (3), M. Bellazzini (1), L. Ciotti (2), A. Marchetti, (4), M. Mignoli (1), D. Romano (1), E. Sacchi (3) ((1) INAF-Osservatorio di, Astrofisica e Scienza dello Spazio, Bologna, Italy

TL;DR
This study presents detailed chemical abundances and radial velocities for six HII regions in the extremely metal-poor galaxy DDO 68, revealing it as one of the most metal-deficient galaxies with unique chemical and kinematic properties.
Contribution
It provides the first direct oxygen abundance measurements in DDO 68's regions, confirming its status as an extremely metal-poor galaxy and analyzing its chemical gradients and element ratios.
Findings
Confirmed DDO 68 as extremely metal-poor with 12+log(O/H)=7.14 and possibly lower in the tail.
Derived a radial oxygen gradient of -0.06 dex/kpc with the direct method.
Found nitrogen levels higher than expected, challenging the idea of a uniform N/O plateau in metal-poor galaxies.
Abstract
We present chemical abundances and radial velocities of six HII regions in the extremely metal-poor star-forming dwarf galaxy DDO 68. They are derived from deep spectra in the wavelength range 3500 - 10,000 {\AA}, acquired with the Multi Object Double Spectrograph (MODS) at the Large Binocular Telescope (LBT). In the three regions where the [O III]4363 {\AA} line was detected, we inferred the abundance of He, N, O, Ne, Ar, and S through the "direct" method. We also derived the oxygen abundances of all the six regions adopting indirect method calibrations. We confirm that DDO 68 is an extremely metal-poor galaxy, and a strong outlier in the luminosity - metallicity relation defined by star-forming galaxies. With the direct-method we find indeed an oxygen abundance of 12+log(O/H)=7.140.07 in the northernmost region of the galaxy and, although with large uncertainties, an…
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