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Title: Mass–Metallicity Relation and Fundamental Metallicity Relation of Metal-poor Star-forming Galaxies at 0.6<$$Z$$<0.9 from the eBOSS Survey

Journal Article · · The Astrophysical Journal (Online)
ORCiD logo [1];  [2];  [2]; ORCiD logo [1]; ORCiD logo [3];  [3];  [3]; ORCiD logo [1];  [1];  [1]
  1. Univ. of Science and Technology of China, Hefei (China). Dept. of Astronomy, CAS Key Laboratory for Research in Galaxies and Cosmology, and School of Astronomy and Space Science
  2. Nanjing Normal Univ. (China). Dept. of Physics and Institute of Theoretical Physics
  3. Chinese Academy of Sciences (CAS), Beijing (China). Key Lab. of Optical Astronomy, National Astronomical Observatories

The stellar mass–metallicity relation (M*–Z; MZR) indicates that the metallicities of galaxies increase with increasing stellar masses. The fundamental metallicity relation (FMR) suggests that galaxies with higher star formation rates (SFRs) tend to have lower metallicities for a given stellar mass. To examine whether the MZR and FMR still hold at poorer metallicities and higher redshifts, we compile a sample of 35 star-forming galaxies (SFGs) at 0.6 < $$z$$ < 0.9 using the public spectral database (v5_10_0) of emission-line galaxies from the extended Baryon Oscillation Spectroscopic Survey. These galaxies are identified for their significant auroral [O iii]λ4363 emission line (S/N $$\leqslant$ 3). With the electronic temperature metallicity calibration, we find nine SFGs that are extremely metal-poor galaxies with 12 + log(O/H) $$\leqslant$$ 7.69 (1/10 Z). The metallicity of the most metal-deficient galaxy is 7.35 ± 0.09 (about 1/20 Z). Compared to the SFGs with normal metallicities in the local and high-redshift universe, our metal-poor SFGs have more than 10 times higher SFRs at a fixed stellar mass. We create a new mass–SFR relation for these metal-poor galaxies at 0.6 < $$z$$ < 0.9. Due to the higher SFRs and younger stellar ages, our metal-poor SFGs deviate from the MZR and FMR in the local universe toward lower metallicities, confirming the existence of FMR, as well as the cosmic evolution of MZR and FMR with redshift.

Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States). National Energy Research Scientific Computing Center (NERSC)
Sponsoring Organization:
USDOE
OSTI ID:
1544072
Journal Information:
The Astrophysical Journal (Online), Journal Name: The Astrophysical Journal (Online) Journal Issue: 1 Vol. 869; ISSN 1538-4357
Publisher:
Institute of Physics (IOP)Copyright Statement
Country of Publication:
United States
Language:
English

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Cited By (6)

Fundamental metallicity relation in CALIFA, SDSS-IV MaNGA, and high- z galaxies journal June 2019
Star Formation Stochasticity Measured from the Distribution of Burst Indicators journal March 2019
The Mass–Metallicity Relation at z ∼ 0.8: Redshift Evolution and Parameter Dependency journal November 2019
The Third Data Release of the Beijing–Arizona Sky Survey journal October 2019
Fundamental metallicity relation in CALIFA, SDSS-IV MaNGA and high-z galaxies text January 2018
Star Formation Stochasticity Measured from the Distribution of Burst Indicators text January 2019