Bar properties as a function of wavelength: a local baseline with S4G for high-redshift studies

Author:

Menéndez-Delmestre Karín1ORCID,Gonçalves Thiago S1,Sheth Kartik2,Düringer Jacques de Lima Tomás13,Kim Taehyun4,Gadotti Dimitri A5ORCID,Schinnerer Eva6,Athanassoula E7,Bosma Albert7ORCID,Elmegreen Debra Meloy8,Knapen Johan H910,Machado Rubens E G11ORCID,Salo Heikki12

Affiliation:

1. Universidade Federal do Rio de Janeiro, Observatorio do Valongo, Ladeira Pedro Antônio , 43, Saúde CEP 20080-090 Rio de Janeiro, RJ , Brazil

2. NASA Headquarters , 300 E. Street SW, Washington DC 20546 , USA

3. WeWork c/o Michael Wagstaff (Spectora) , 1550 Wewatta St, Suite 4007, Denver CO 80202 , USA

4. Department of Astronomy and Atmospheric Sciences, Kyungpook National University , Daegu, 41566 , Republic of Korea

5. Centre for Extragalactic Astronomy, Department of Physics, Durham University , South Road, Durham DH1 3LE , UK

6. Max-Planck-Institute for Astronomy , K’onigstuhl 17, Heidelberg D-69117 , Germany

7. Aix Marseille Université, CNRS , CNES, LAM, F-13388 Marseille Cedex 13 , France

8. Department of Physics & Astronomy, Vassar College , Poughkeepsie, NY 12604 , USA

9. Instituto de Astrofísica de Canarias , Vía Láctea S/N, E-38205 La Laguna, Tenerife , Spain

10. Departamento de Astrofísica , Universidad de La Laguna, E-38206 La Laguna, Tenerife , Spain

11. Departamento Acadêmico de Física, Universidade Tecnológica Federal do Paraná , Rua Sete de Setembro 3165, Curitiba , Brazil

12. Space Physics and Astronomy Research Unit, University of Oulu , Pentti Kaiteran katu 1, FI-90014 Oulu , Finland

Abstract

ABSTRACT The redshift evolution of bars is an important signpost of the dynamic maturity of disc galaxies. To characterize the intrinsic evolution safe from band-shifting effects, it is necessary to gauge how bar properties vary locally as a function of wavelength. We investigate bar properties in 16 nearby galaxies from the Spitzer Survey of Stellar Structure in Galaxies (S4G) at ultraviolet, optical, and mid-infrared wavebands. Based on the ellipticity and position angle profiles from fitting elliptical isophotes to the two-dimensional light distribution, we find that both bar length and ellipticity – the latter often used as a proxy for bar strength – increase at bluer wavebands. Bars are 9 per cent longer in the B band than at 3.6 μm. Their ellipticity increases typically by 8 per cent in the B band, with a significant fraction (>40 per cent) displaying an increase up to 35 per cent. We attribute the increase in bar length to the presence of star-forming knots at the end of bars: these regions are brighter in bluer bands, stretching the bar signature further out. The increase in bar ellipticity could be driven by the apparent bulge size: the bulge is less prominent at bluer bands, allowing for thinner ellipses within the bar region. Alternatively, it could be due to younger stellar populations associated with the bar. The resulting effect is that bars appear longer and thinner at bluer wavebands. This indicates that band-shifting effects are significant and need to be corrected for high-redshift studies to reliably gauge any intrinsic evolution of the bar properties with redshift.

Funder

Serrapilheira Institute

CNPq

FAPERJ

National Research Foundation of Korea

MSIT

STFC

Centre National d’Etudes Spatiales

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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