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GAMA/H-ATLAS: Common star formation rate indicators and their dependence on galaxy physical parameters

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posted on 2024-08-06, 10:23 authored by L. Wang, P. Norberg, M. L P Gunawardhana, S. Heinis, I. K. Baldry, J. Bland-Hawthorn, N. Bourne, S. Brough, M. J I Brown, Michelle CluverMichelle Cluver, A. Cooray, Elisabete Lima Da Cunha, S. P. Driver, L. Dunne, S. Dye, S. Eales, M. W. Grootes, B. W. Holwerda, A. M. Hopkins, E. Ibar, R. Ivison, C. Lacey, M. A. Lara-Lopez, J. Loveday, S. J. Maddox, M. J. Michałowski, I. Oteo, M. S. Owers, C. C. Popescu, D. J B Smith, Edward TaylorEdward Taylor, R. J. Tuffs, P. van der Werf
We compare common star formation rate (SFR) indicators in the local Universe in the Galaxy and Mass Assembly (GAMA) equatorial fields (~160 deg2), using ultraviolet (UV) photometry from GALEX, far-infrared and sub-millimetre (sub-mm) photometry from Herschel Astrophysical Terahertz Large Area Survey, and Hα spectroscopy from the GAMA survey. With a high-quality sample of 745 galaxies (median redshift 〈z〉 = 0.08), we consider three SFR tracers: UV luminosity corrected for dust attenuation using the UV spectral slope β (SFRUV, corr), Hα line luminosity corrected for dust using the Balmer decrement (BD) (SFRHα, corr), and the combination of UV and infrared (IR) emission (SFRUV + IR). We demonstrate that SFRUV, corr can be reconciled with the other two tracers after applying attenuation corrections by calibrating Infrared excess (IRX; i.e. the IR to UV luminosity ratio) and attenuation in the Hα (derived from BD) against β. However, β, on its own, is very unlikely to be a reliable attenuation indicator. We find that attenuation correction factors depend on parameters such as stellar mass (M*), z and dust temperature (Tdust), but not on Hα equivalent width or Sérsic index. Due to the large scatter in the IRX versus β correlation, when compared to SFRUV + IR, the β-corrected SFRUV, corr exhibits systematic deviations as a function of IRX, BD and Tdust.

Funding

Science and Technology Facilities Council

Agencia Nacional de Investigación y Desarrollo

European Research Council

European Commission

National Aeronautics and Space Administration

Australian Research Council

Royal Society

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ISSN

1365-2966

Journal title

Monthly Notices of the Royal Astronomical Society

Volume

461

Issue

2

Pagination

18 pp

Publisher

Oxford University Press

Copyright statement

This article has been accepted for publication in the Monthly Notices of the Royal Astronomical Society. Copyright © 2016 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society.

Language

eng

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