Catalogue of nearby blue and near-solar gas metallicity SDSS dwarf galaxies

Author:

Guo Yan12ORCID,Sengupta Chandreyee1ORCID,Scott Tom C3ORCID,Lagos Patricio3ORCID,Luo Yu12ORCID

Affiliation:

1. Purple Mountain Observatory, Chinese Academy of Sciences , 10 Yuanhua Road, Nanjing, Jiangsu 210023 , China

2. School of Astronomy and Space Sciences, University of Science and Technology of China , 96 Jinzhai Road, Hefei, Anhui 230026 , China

3. Institute of Astrophysics and Space Sciences (IA Porto) , Rua das Estrelas, P-4150-762 Porto , Portugal

Abstract

ABSTRACT A less explored aspect of dwarf galaxies is their metallicity evolution. Generally, dwarfs have lower metallicities than Hubble sequence late-type galaxies, but in reality, dwarfs span a wide range of metallicities with several open questions regarding the formation and evolution of the lowest and the highest metallicity dwarfs. We present a catalogue of 3459 blue, nearby, star-forming dwarf galaxies extracted from SDSS DR-16 including calculation of their metallicities using the mean of several calibrators. To compile our catalogue we applied redshift, absolute magnitude, stellar mass, optical diameter, and line flux signal-to-noise criteria. This produced a catalogue from the upper end of the dwarf galaxy stellar mass range. Our catalogued dwarfs have blue g – i colours and Hβ equivalent widths, indicative of having undergone a recent episode of star formation, although their star formation rates (SFRs) suggest only a moderate to low enhancement in star formation, similar to the SFRs in low surface brightness and evolved tidal dwarfs. While the catalogued dwarfs cover a range of metallicities, their mean metallicity is ∼0.2 dex below solar metallicity, indicating relatively chemically evolved galaxies. The vast majority of the catalogue, with clean photometry, are relatively isolated dwarfs with only modest SFRs and a narrow range of g – i colour, consistent with internally driven episodic mild bursts of star formation. The presented catalogue’s robust metallicity estimates for nearby SDSS dwarf galaxies will help target future studies to understand the physical processes driving the metallicity evolution of dwarfs.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Fundação para a Ciência e a Tecnologia

Publisher

Oxford University Press (OUP)

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