Ring Star Formation Rates in Barred and Nonbarred Galaxies
R. D. Grouchy (1), R. J. Buta (1), H. Salo (2), and E. Laurikainen (2), ((1) University of Alabama, Tuscaloosa, AL (2) University of Oulu, Oulu,, Finland)

TL;DR
This study investigates whether star formation in rings of nonbarred galaxies is influenced by gravitational potential, finding that star formation properties are similar regardless of bar presence, suggesting alternative formation mechanisms.
Contribution
It provides the first comparative analysis of star formation rates in rings of barred and nonbarred galaxies, highlighting the role of gravitational forces over bar-driven resonance.
Findings
Inner ring SFRs are similar in barred and nonbarred galaxies.
Star formation properties are independent of ring shape and bar strength.
Local bar forcing correlates better with ring properties than global bar strength.
Abstract
Nonbarred ringed galaxies are relatively normal galaxies showing bright rings of star formation in spite of lacking a strong bar. This morphology is interesting because it is generally accepted that a typical ring forms when material collects near a resonance, set up by the pattern speed of a bar or bar-like perturbation. Our goal in this paper is to examine whether the ring star formation properties are related to the non-axisymmetric gravity potential in general. For this purpose, we obtained H{\alpha} emission line images and calculated the line fluxes and star formation rates (SFRs) for 16 nonbarred SA galaxies and four weakly barred SAB galaxies with rings. For comparison, we combine our observations with a re-analysis of previously published data on five SA, seven SAB, and 15 SB galaxies with rings, three of which are duplicates from our sample. With these data, we examine what…
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