UVIT view of NGC 5291: Ongoing star formation in tidal dwarf galaxies at ∼ 0.35 kpc resolution

Author:

Rakhi R1,Santhosh Geethika1,Joseph Prajwel23,George Koshy4ORCID,Subramanian Smitha2,Kavila Indulekha5,Postma J6,Duc Pierre-Alain7,Côté Patrick8,Cortese Luca9ORCID,Ghosh S K10,Subramaniam Annapurni2,Tandon Shyam11,Hutchings John8,Wesley P Samuel3,Bharadwaj Aditya3,Niroula Neeran3

Affiliation:

1. Department of Physics , NSS College, Pandalam, Kerala 689 501, India

2. Indian Institute of Astrophysics , Bangalore 560034, India

3. Department of Physics and Electronics , CHRIST (Deemed to be University), Bangalore 560029, India

4. Faculty of Physics , Ludwig-Maximilians-Universität, Scheinerstr. 1, D-81679 Munich, Germany

5. School of Pure and Applied Physics, Mahatma Gandhi University , Kottayam, Kerala 686560, India

6. Department of Physics and Astronomy, University of Calgary , 2500 University Drive NW, Calgary, Alberta T2N 1N4, Canada

7. Université de Strasbourg , CNRS, Observatoire astronomique de Strasbourg, UMR 7550, F-67000 Strasbourg, France

8. Herzberg Astronomy and Astrophysics Research Centre, National Research Council of Canada , 5071 W. Saanich Road, Victoria, BC V9E 2E7, Canada

9. International Centre for Radio Astronomy Research (ICRAR), University of Western Australia , Crawley, WA 6009, Australia

10. Tata Institute of Fundamental Research , Colaba, Mumbai 400005, India

11. Inter-University Centre for Astronomy and Astrophysics , PostBag 4, Ganeshkhind, Pune 411007, India

Abstract

ABSTRACT NGC 5291, an early-type galaxy surrounded by a giant H i ring, is believed to be formed from collision with another galaxy. Several star forming complexes and tidal dwarf galaxies are distributed along the collisional ring which are sites of star formation in environments where extreme dynamical effects are involved. Dynamical effects can affect the star formation properties and the spatial distribution of star forming complexes along the tidal features. To study and quantify the star formation activity in the main body and in the ring structure of the NGC 5291 system, we use high spatial resolution FUV and NUV imaging observations from the Ultraviolet Imaging Telescope onboard AstroSat. A total of 57 star-forming knots are identified to be part of this interacting system out of which 12 are new detections (star forming complexes that lie inside the H i contour) compared to the previous measurements from lower resolution UV imaging. We estimate the attenuation in UV for each of the resolved star-forming knots using the UV spectral slope β, derived from the FUV − NUV colour. Using the extinction corrected UV fluxes, we derive the star formation rate of the resolved star forming complexes. The extinction corrected total star formation rate of this system is estimated as 1.75 ± 0.04 $\mathrm{M_\odot \, yr}^{-1}$. The comparison with dwarf galaxy populations (BCD, Sm, and dIm galaxies) in the nearby Universe shows that many of the knots in the NGC 5291 system have SFR values comparable to the SFR of BCD galaxies.

Funder

ISRO

Department of Foreign Affairs and Trade

Science and Engineering Research Board

Australian Research Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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