Stellar feedback impact on the ionized gas kinematics in the dwarf galaxy Sextans B
Abstract
We investigated the ionised and atomic gas kinematics and excitation state in the central region of ongoing star formation of the nearby low-metallicity dwarf galaxy Sextans B. The analysis is based on the new observations performed in Ha emission line with high resolution () scanning Fabry-Perot interferometer at the 6-m BTA SAO RAS telescope, and on the long-slit spectral observations at the 9.2-m SALT and 2.5-m CMO SAI MSU telescopes. Strong non-circular gas motions detected in the studied regions probably resulted from the off-plane gas motions and impact of stellar feedback. We identified six regions of elevated Ha velocity dispersion, five of which exhibit asymmetric or two-component Ha line profiles. Three of these regions are young ( Myr) expanding () superbubbles. We argue that at least three regions in the galaxy could be supernova remnants. We conclude that supernovae feedback is the dominant source of energy for superbubbles in Sextans B, which is expected for such a low metallicity, although we cannot rule out a strong impact of pre-supernova feedback for one superbubble.
Keywords
Cite
@article{arxiv.2402.03027,
title = {Stellar feedback impact on the ionized gas kinematics in the dwarf galaxy Sextans B},
author = {Ivan S. Gerasimov and Oleg . V. Egorov and Alexei V. Moiseev and Alexei Yu. Kniazev and Tatiana A. Lozinskaya and Evgeniya S. Egorova},
journal= {arXiv preprint arXiv:2402.03027},
year = {2024}
}
Comments
16 pages, 6+6 figures, 4 tables. submitted to MNRAS after revision