Luminosity Dependence and Redshift Evolution of Strong Emission-line Diagnostics in Star-Forming Galaxies
arXiv:1512.00017 · doi:10.3847/0004-637X/817/1/57
Abstract
We examine the redshift evolution of standard strong emission-line diagnostics for Hbeta-selected star-forming galaxies using the local SDSS sample and a new z = 0.2 - 2.3 sample obtained from HST WFC3 grism and Keck DEIMOS and MOSFIRE data. We use the SDSS galaxies to show that there is a systematic dependence of the strong emission-line properties on Balmer-line luminosity, which we interpret as showing that both the N/O abundance and the ionization parameter increase with increasing line luminosity. Allowing for the luminosity dependence tightens the diagnostic diagrams and the metallicity calibrations. The combined SDSS and high-redshift samples show that there is no redshift evolution in the line properties once the luminosity correction is applied, i.e., all galaxies with a given L(Hbeta) have similar strong emission-line distributions at all the observed redshifts. We argue that the best metal diagnostic for the high-redshift galaxies may be a luminosity-adjusted version of the [NII]6584/Halpha metallicity relation.
Accepted for publication in ApJ. 16 pages, 15 figures
References in corpus (11)
- The Mass-Metallicity Relation at z~2
- Strong Nebular Line Ratios in the Spectra of z~2-3 Star-forming Galaxies: First Results from KBSS-MOSFIRE
- The MOSDEF Survey: Mass, Metallicity, and Star-formation Rate at z~2.3
- New insights into the stellar content and physical conditions of star-forming galaxies at z = 2-3 from spectral modelling
- The MOSDEF Survey: Excitation Properties of Star-forming Galaxies
- AGN Emission Line Diagnostics and the Mass-Metallicity Relation up to Redshift z~2: the Impact of Selection Effects and Evolution
- Metallicities and Physical Conditions in Star-forming Galaxies at z~1.0-1.5
- A Consistent Study of Metallicity Evolution at 0.8 < z < 2.6
- A Critical Look at the Mass-Metallicity-SFR Relation in the Local Universe. I. An Improved Analysis Framework and Confounding Systematics
- Excitation properties of galaxies with the highest [OIII]/[OII] ratios: No evidence for massive escape of ionizing photons
- The gas inflow and outflow rate in star-forming galaxies at
Cited by in corpus (30)
- De Re Metallica: The cosmic chemical evolution of galaxies
- Nebular Emission Line Ratios in z~2-3 Star-Forming Galaxies with KBSS-MOSFIRE: Exploring the Impact of Ionization, Excitation, and Nitrogen-to-Oxygen Ratio
- The MOSDEF Survey: Direct-Method Metallicities and ISM Conditions at
- "Direct" Gas-Phase Metallicity in Local Analogs of High-Redshift Galaxies: Empirical Metallicity Calibrations for High-Redshift Star-Forming Galaxies
- The MOSDEF Survey: Direct Observational Constraints on the Ionizing Photon Production Efficiency, , at z~2
- The FMOS-COSMOS survey of star-forming galaxies at z~1.6. IV: Excitation state and chemical enrichment of the interstellar medium
- A Coherent Study of Emission Lines from Broad-Band Photometry: Specific Star-Formation Rates and [OIII]/Hβ Ratio at 3 < z < 6
- EMPRESS. V. Metallicity Diagnostics of Galaxies over 12+log(O/H)=~6.9-8.9 Established by a Local Galaxy Census: Preparing for JWST Spectroscopy
- Synthetic nebular emission from massive galaxies I: origin of the cosmic evolution of optical emission-line ratios
- The COSMOS [OII] Survey: Evolution of Electron Density with Star Formation Rate
- Biases in metallicity measurements from global galaxy spectra: the effects of flux-weighting and diffuse ionized gas contamination
- A Submillimeter Perspective on the GOODS Fields (SUPER GOODS) - I. An Ultradeep SCUBA-2 Survey of the GOODS-N
- A Tight Relation Between N/O Ratio and Galaxy Stellar Mass Can Explain the Evolution of Strong Emission Line Ratios with Redshift
- The Star Formation Burstiness and Ionizing Efficiency of Low-mass Galaxies
- The Metal Abundances across Cosmic Time () Survey. II. Evolution of the Mass-Metallicity Relation over 8 Billion Years, using [OIII]4363Å-based Metallicities
- The Grism Lens-Amplified Survey from Space (GLASS) X. Sub-kpc resolution gas-phase metallicity maps at cosmic noon behind the Hubble Frontier Fields cluster MACS1149.6+2223
- Evolution of N/O Abundance Ratios and Ionization Parameters from z~0 to 2 Investigated by the Direct Temperature Method
- Local Analogs for High-redshift Galaxies: Resembling the Physical Conditions of the Interstellar Medium in High-redshift Galaxies
- The BPT Diagram in Cosmological Galaxy Formation Simulations: Understanding the Physics Driving Offsets at High-Redshift
- Changing physical conditions in star-forming galaxies between redshifts 0 < z < 4: [OIII]/Hb evolution
- Local analogues of high-redshift star-forming galaxies: integral field spectroscopy of green peas
- The Metal Abundances across Cosmic Time () Survey. I. Optical Spectroscopy in the Subaru Deep Field
- VLT/XShooter spectroscopy of Lyman Break Analogs: direct method O/H abundances and nitrogen enhancements
- A Submillimeter Perspective on the GOODS Fields (SUPER GOODS). V. Deep 450 Micron Imaging
- A Submillimeter Perspective on the GOODS Fields (SUPER GOODS). IV. The Submillimeter Properties of X-ray Sources in the CDF-S
- z ~ 2.5 - 3 Ionizers in the GOODS-N Field
- Properties of the Lowest Metallicity Galaxies Over the Redshift Range z = 0.2 to z = 1
- The nebular properties of star-forming galaxies at intermediate redshift from the Large Early Galaxy Astrophysics Census
- Disentangling the physical origin of emission line ratio offsets at high redshift with spatially resolved spectroscopy
- Through the fog: a complementary optical galaxy classification scheme for 'intermediate' redshifts