Diffuse ionized gas and its effects on nebular metallicity estimates of star-forming galaxies

Author:

Vale Asari N12ORCID,Couto G S13ORCID,Cid Fernandes R1ORCID,Stasińska G4ORCID,de Amorim A L1ORCID,Ruschel-Dutra D1ORCID,Werle A15ORCID,Florido T Z1

Affiliation:

1. Departamento de Física–CFM, Universidade Federal de Santa Catarina, C.P. 476, 88040-900 Florianópolis, SC, Brazil

2. School of Physics and Astronomy, University of St. Andrews, North Haugh, St. Andrews KY16 9SS, UK

3. Centro de Astronomía (CITEVA), Universidad de Antofagasta, Avenida Angamos 601, Antofagasta, 02800, Chile

4. LUTH, CNRS, Observatoire de Paris, PSL University, F-92195, France

5. Instituto de Astronomia, Geofísica e Ciências Atmosféricas, Universidade de São Paulo, R. do Matão 1226, 05508-090 São Paulo, Brazil

Abstract

ABSTRACT We investigate the impact of the diffuse ionized gas (DIG) on abundance determinations in star-forming (SF) galaxies. The DIG is characterized using the H α equivalent width (WH α). From a set of 1 409 SF galaxies from the Mapping Nearby Galaxies at APO (MaNGA) survey, we calculate the fractional contribution of the DIG to several emission lines using high-S/N data from SF spaxels (instead of using noisy emission-lines in DIG-dominated spaxels). Our method is applicable to spectra with observed WH α ≳ 10 Å (which are not dominated by DIG emission). Since the DIG contribution depends on galactocentric distance, we provide DIG-correction formulae for both entire galaxies and single aperture spectra. Applying those to a sample of $\, \gt 90\, 000$ SF galaxies from the Sloan Digital Sky Survey, we find the following. (1) The effect of the DIG on strong-line abundances depends on the index used. It is negligible for the ([O iii]/H β)/([N ii]/H α) index, but reaches ∼0.1 dex at the high-metallicity end for [N ii]/H α. (2) This result is based on the ∼kpc MaNGA resolution, so the real effect of the DIG is likely greater. (3) We revisit the mass–metallicity–star formation rate (SFR) relation by correcting for the DIG contribution in both abundances and SFR. The effect of DIG removal is more prominent at higher stellar masses. Using the [N ii]/Hα index, O/H increases with SFR at high stellar mass, contrary to previous claims.

Funder

Royal Society and the Newton Fund

Fundação de Amparo à Pesquisa e Inovação de Santa Catarina

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior – Brasil

Comité Mixto ESO-Chile

Fundação de Amparo à Pesquisa do Estado de São Paulo

Programa Nacional de Pós Doutorado

National Science Foundation

National Aeronautics and Space Administration

Japanese Monbukagakusho

Max Planck Society

Higher Education Funding Council for England

Alfred P. Sloan Foundation

U.S. Department of Energy

Center for High-Performance Computing

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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