Long-slit spectral study of the unusual post-interacting galaxy Arp 263

Author:

Zasov Anatoly V12,Saburova Anna S1ORCID,Egorov Oleg V13ORCID,Lander Vsevolod Yu1,Afanasiev Victor L4,Uklein Roman I4

Affiliation:

1. Sternberg Astronomical Institute, Moscow M.V. Lomonosov State University , Universitetskij pr., 13, Moscow 119234 , Russia

2. Faculty of Physics, Moscow M.V. Lomonosov State University , Leninskie gory 1, Moscow 119991 , Russia

3. Astronomisches Rechen-Institut, Zentrum für Astronomie der Universität Heidelberg , Mönchhofstr. 12–14, D-69120 Heidelberg , Germany

4. Special Astrophysical Observatory, Russian Academy of Sciences , Nizhniy Arkhyz, Karachai-Cherkessian Republic 357147 , Russia

Abstract

ABSTRACT Arp 263 is a single irregularly shaped galaxy with intense star formation. Its short tidal features of low brightness visible in both optics and the H i line, as well as the strong non-circular motion of atomic gas in the outskirts, give pieces of evidence of a recent merging with some intruder, non-observed directly. We carried out spectral observations of this galaxy at the 6 m telescope of the Special Astrophysical Observatory. The spectra for three positions of the spectral slit were obtained: two of them cross the central region of the galaxy and the third one runs along the nearly straight narrow chain of clumps of emission gas with a length of 4–5 kpc. We derived the profiles of velocity, fluxes, and oxygen abundances (O/H) along the slits. We confirm that within the radius of several kpc the galaxy rotates regularly. The maximal value of the rotational velocity allows us to conclude that the dark mass of the galaxy prevails over the mass of its visible components. The observed velocity profile along the peripheral star-forming chain gives pieces of evidence that it is located outside of the plane of the disc, and the gas that formed the chain is probably falling back on to the disc after being ejected from the galaxy. We discuss that the observed chain of clumps is the result of gravitational instability of the gaseous filament.

Funder

Russian Science Foundation

Ministry of Science and Higher Education of the Russian Federation

U.S. Department of Energy

Office of Science

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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