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Star formation in the nearby dwarf galaxy DDO 53: interplay between gas accretion and stellar feedback

Oleg V. Egorov, Tatiana A. Lozinskaya, Konstantin I Vasiliev, Anastasiya D Yarovova, Ivan S. Gerasimov, Kathryn Kreckel, А. В. Моисеев

2021Monthly Notices of the Royal Astronomical Society20 citationsDOIOpen Access PDF

Abstract

ABSTRACT We present the results of a multiwavelength study of the nearby dwarf galaxy DDO 53 – a relatively isolated member of the M 81 group. We analyse the atomic and ionized gas kinematics (based on the observations with Fabry–Perot interferometer in H α line and archival data in H i 21 cm line), distribution, excitation, and oxygen abundance of the ionized gas (based on the long-slit and integral-field spectroscopy and on imaging with narrow-band filters), and their relation with the young massive stars (based on archival HST data). We detect a faint 2-kpc sized supershell of ionized gas surrounding the galaxy. Most probably, this structure represents a large-scale gas outflow, however, it could be also created by the ionizing quanta leaking from star-forming regions to the marginally detected atomic hydrogen surrounding the galactic disc. We analyse the properties of the anomalous H i in the north part of the galaxy and find that its peculiar kinematics is also traced by ionized gas. We argue that this H i feature is related to the accreting gas cloud captured from the intergalactic medium or remaining after the merger event occurred >1 Gyr ago. The infalling gas produces shocks in the interstellar medium and could support the star formation activity in the brightest region in DDO 53.

Topics & Concepts

PhysicsAstrophysicsGalaxyDwarf galaxyIntergalactic travelAstronomyInterstellar mediumAccretion (finance)Star formationLine (geometry)StarsRedshiftMathematicsGeometryGalaxies: Formation, Evolution, PhenomenaAstrophysics and Star Formation StudiesStellar, planetary, and galactic studies
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