"Direct" Gas-phase Metallicities, Stellar Properties, and Local Environments of Emission-line Galaxies at Redshift below 0.90
arXiv:1307.7712 · doi:10.1088/0004-637X/780/2/122
Abstract
Using deep narrow-band (NB) imaging and optical spectroscopy from the Keck telescope and MMT, we identify a sample of 20 emission-line galaxies (ELGs) at z=0.065-0.90 where the weak auroral emission line, [OIII]4363, is detected at >3σ. These detections allow us to determine the gas-phase metallicity using the "direct'' method. With electron temperature measurements and dust attenuation corrections from Balmer decrements, we find that 4 of these low-mass galaxies are extremely metal-poor with 12+log(O/H) <= 7.65 or one-tenth solar. Our most metal-deficient galaxy has 12+log(O/H) = 7.24^{+0.45}_{-0.30} (95% confidence), similar to some of the lowest metallicity galaxies identified in the local universe. We find that our galaxies are all undergoing significant star formation with average specific star formation rate (SFR) of (100 Myr)^{-1}, and that they have high central SFR surface densities (average of 0.5 Msun/yr/kpc^2. In addition, more than two-thirds of our galaxies have between one and four nearby companions within a projected radius of 100 kpc, which we find is an excess among star-forming galaxies at z=0.4-0.85. We also find that the gas-phase metallicities for a given stellar mass and SFR lie systematically below the local M-Z-(SFR) relation by \approx0.2 dex (2σ significance). These results are partly due to selection effects, since galaxies with strong star formation and low metallicity are more likely to yield [OIII]4363 detections. Finally, the observed higher ionization parameter and electron density suggest that they are lower redshift analogs to typical z>1 galaxies.
Accepted for publication in the Astrophysical Journal (15 November 2013). 31 pages in emulateapj format with 16 figures and 7 tables. Revised to address referee's comments, which include discussion on selection effects, similarities to green pea galaxies, and nebular continuum contribution. Modifications were made for some electron temperature and metallicity measurements
References in corpus (22)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The Mass-Metallicity Relation at z~2
- An ultra-deep near-infrared spectrum of a compact quiescent galaxy at z=2.2
- Ubiquitous outflows in DEEP2 spectra of star-forming galaxies at z=1.4
- An H-alpha Imaging Survey of Galaxies in the Local 11 Mpc Volume
- Subaru Deep Survey V. A Census of Lyman Break Galaxies at z=4 and 5 in the Subaru Deep Fields: Photometric Properties
- Theoretical Evolution of Optical Strong Lines across Cosmic Time
- The End of the Reionization Epoch Probed by Ly-alpha Emitters at z=6.5 in the Subaru Deep Field
- Clues to the Origin of the Mass-Metallicity Relation: Dependence on Star Formation Rate and Galaxy Size
- The Cosmic BPT Diagram: Confronting Theory with Observations
- Resolving the electron temperature discrepancies in HII Regions and Planetary Nebulae: kappa-distributed electrons
- The Luminosity Function and Star Formation Rate between Redshifts of 0.07 and 1.47 for Narrow-band Emitters in the Subaru Deep Field
- Rest-Frame Optical Spectra of Three Strongly Lensed Galaxies at z~2
- The H-alpha Luminosity Function and Star Formation Rate Volume Density at z=0.8 from the NEWFIRM H-alpha Survey
- Measuring nebular temperatures: the effect of new collision strengths with equilibrium and kappa-distributed electron energies
- The metallicity evolution of low mass galaxies: New constraints at intermediate redshift
- A photometric survey for Lyalpha-HeII dual emitters: Searching for Population III stars in high-redshift galaxies
- First direct metallicity measurement of a lensed star-forming galaxy at z=1.7
- A Census of Star-Forming Galaxies at z = 1-3 in the Subaru Deep Field
- Spectrophotometry with Hectospec, the MMT's Fiber-Fed Spectrograph
- MMT Extremely Metal Poor Galaxy Survey I. An Efficient Technique to Identify Metal Poor Galaxies
Cited by in corpus (65)
- Understanding Galaxy Evolution through Emission Lines
- The Universal Relation of Galactic Chemical Evolution: The Origin of the Mass-Metallicity Relation
- Star formation sustained by gas accretion
- Ly profile, dust, and prediction of Ly escape fraction in Green Pea Galaxies
- AGN Emission Line Diagnostics and the Mass-Metallicity Relation up to Redshift z~2: the Impact of Selection Effects and Evolution
- An extreme [OIII] emitter at : a low metallicity Lyman continuum source
- ISM excitation and metallicity of star-forming galaxies at z~3.3 from near-IR spectroscopy
- "Direct" Gas-Phase Metallicity in Local Analogs of High-Redshift Galaxies: Empirical Metallicity Calibrations for High-Redshift Star-Forming Galaxies
- Blueberry galaxies: the lowest mass young starbursts
- Low Masses and High Redshifts: The Evolution of the Mass-Metallicity Relation
- A Critical Look at the Mass-Metallicity-SFR Relation in the Local Universe. I. An Improved Analysis Framework and Confounding Systematics
- Green Pea Galaxies Reveal Secrets of Ly Escape
- The Mass-Metallicity-SFR Relation at z >~ 2 with 3D-HST
- The HETDEX Pilot Survey V: The Physical Origin of Lyman-alpha Emitters Probed by Near-infrared Spectroscopy
- Temperature-based metallicity measurements at z=0.8: direct calibration of strong-line diagnostics at intermediate redshift
- The Metal Abundances across Cosmic Time () Survey. II. Evolution of the Mass-Metallicity Relation over 8 Billion Years, using [OIII]4363Å-based Metallicities
- Present-day mass-metallicity relation for galaxies using a new electron-temperature method
- The Mass-Metallicity Relation at z=8: Direct-Method Metallicity Constraints and Near-Future Prospects
- The Evolution of Chemical Abundance in Quasar Broad Line Region
- Discovering extremely compact and metal-poor, star-forming dwarf galaxies out to z ~ 0.9 in the VIMOS Ultra-Deep Survey
- The WiggleZ Dark Energy Survey: Final Data Release and the Metallicity of UV-Luminous Galaxies
- Stellar Mass--Gas-phase Metallicity Relation at : A Power Law with Increasing Scatter toward the Low-mass Regime
- The Relationship between Stellar Mass, Gas Metallicity, and Star Formation Rate for Halpha-selected Galaxies at z~0.8 from the NewHalpha Survey
- The Subaru FMOS Galaxy Redshift Survey (FastSound). III. The mass-metallicity relation and the fundamental metallicity relation at
- Characterization of star-forming dwarf galaxies at 0.1 0.9 in VUDS: Probing the low-mass end of the mass-metallicity relation
- EMPRESS. II. Highly Fe-Enriched Metal-poor Galaxies with (Fe/O) and (O/H) : Possible Traces of Super Massive () Stars in Early Galaxies
- The stellar mass versus stellar metallicity relation of star-forming galaxies at and implications for the evolution of the -enhancement
- Metal-poor, Strongly Star-Forming Galaxies in the DEEP2 Survey: The Relationship between Stellar Mass, Temperature-based Metallicity, and Star Formation Rate
- Spectroscopic Observation and Analysis of HII regions in M33 with MMT: Temperatures and Oxygen Abundances
- MUSE integral-field spectroscopy towards the Frontier Fields cluster Abell S1063: II. Properties of low luminosity Lyman alpha emitters at z>3
- Evidence of very low metallicity and high ionization state in a strongly lensed, star-forming dwarf galaxy at z=3.417
- Extreme emission-line galaxies out to z1 in zCOSMOS. I. Sample and characterization of global properties
- The Detection of [O III]4363 in a Lensed, Dwarf Galaxy at = 2.59: Testing Metallicity Indicators and Scaling Relations at High Redshift and Low Mass
- Local anti-correlation between star-formation rate and gas-phase metallicity in disk galaxies
- Physical conditions of the interstellar medium in star-forming galaxies at z~1.5
- The Mass-Metallicity Relation at : Redshift Evolution and Parameter Dependency
- Mass - metallicity relation and fundamental metallicity relation of metal-poor star-forming galaxies at from the eBOSS survey
- What determines the local metallicity of galaxies: global stellar mass, local stellar mass surface density or star formation rate?
- Lyman-Break Galaxies at in the Subaru Deep Field: Luminosity Function, Clustering and [OIII] Emission
- The Nuclear Region of NGC1365: Star Formation, Negative Feedback, and Outflow Structure
- The Metal Abundances across Cosmic Time () Survey. I. Optical Spectroscopy in the Subaru Deep Field
- Mass-Metallicity Relation for Local Analogs of High-Redshift galaxies: Implications for the Evolution of the Mass-Metallicity Relations
- Lyman Continuum Emission Escaping from Luminous Green Pea Galaxies at z=0.5
- [O II] nebular emission from Mg II absorbers: Star formation associated with the absorbing gas
- The mass--metallicity relation AKARI-FMOS infrared galaxies at in the AKARI North Ecliptic Pole Deep Survey Field
- Spatially resolved mass-metallicity relation at z~0.26 from the MUSE-Wide Survey
- Star-forming galaxies at low-redshift in the SHARDS survey
- Gas Accretion and Star Formation Rates
- A sample of metal-poor galaxies identified from the LAMOST spectral survey
- A Variant Stellar-to-nebular Dust Attenuation Ratio on Subgalactic and Galactic Scales
- The Local Star Formation Rate Surface Density And Metallicity Relation For Star-forming Galaxies
- Optical spectroscopy of young tidal objects around two interacting galaxy pairs
- The metallicity evolution of blue compact dwarf galaxies from the intermediate redshift to the local Universe
- Strong [O III] λ5007 Compact Galaxies Identified from SDSS DR16 and Their Scaling Relations
- Asymmetric star formation triggered by gas inflow in a barred lenticular galaxy PGC 34107
- Properties of the Lowest Metallicity Galaxies Over the Redshift Range z = 0.2 to z = 1
- Dust Attenuation Curve for Local Subgalactic Star-forming Regions
- Chemical Abundances of a Sample of Oxygen-dominated Galaxies
- Emission Line Metallicities From The Faint Infrared Grism Survey and VLT/MUSE
- Direct determination of oxygen abundances in line emitting star-forming galaxies at intermediate redshift
- MAMMOTH-MOSFIRE: Environmental Effects on Galaxy Interstellar Medium at
- Sub-galactic scaling relations with T-based metallicity of low metallicity regions in galaxies: metal-poor gas inflow may have important effects?
- Leonessa: An Extremely Metal-poor Galaxy Undergoing Secular Chemical Evolution
- What do planetary nebulae and H II regions reveal about the chemical evolution of nearby dwarf galaxies?
- The Stellar Population of Metal-Poor Galaxies at z 0.8 and the Evolution of the Mass-Metallicity Relation