Integral field spectroscopy with SINFONI of VVDS galaxies. II. The mass-metallicity relation at 1.2 < z < 1.6
arXiv:0903.1211 · doi:10.1051/0004-6361/200911994
Abstract
This work aims to provide a first insight into the mass-metallicity (MZ) relation of star-forming galaxies at redshift z~1.4. To reach this goal, we present a first set of nine VVDS galaxies observed with the NIR integral-field spectrograph SINFONI on the VLT. Oxygen abundances are derived from empirical indicators based on the ratio between strong nebular emission-lines (Halpha, [NII]6584 and [SII]6717,6731). Stellar masses are deduced from SED fitting with Charlot & Bruzual (2007) population synthesis models, and star formation rates are derived from [OII]3727 and Halpha emission-line luminosities. We find a typical shift of 0.2-0.4 dex towards lower metallicities for the z~1.4 galaxies, compared to the MZ-relation in the local universe as derived from SDSS data. However, this small sample of eight galaxies does not show any clear correlation between stellar mass and metallicity, unlike other larger samples at different redshift (z~0, z~0.7, and z~2). Indeed, our galaxies lie just under the relation at z~2 and show a small trend for more massive galaxies to be more metallic (~0.1 logarithmic slope). There are two possible explanations to account for these observations. First, the most massive galaxies present higher specific star formation rates when compared to the global VVDS sample which could explain the particularly low metallicity of these galaxies as already shown in the SDSS sample. Second, inflow of metal-poor gas due to tidal interactions could also explain the low metallicity of these galaxies as two of these three galaxies show clear signatures of merging in their velocity fields. Finally, we find that the metallicity of 4 galaxies is lower by ~0.2 to 0.4 dex if we take into account the N/O abundance ratio in their metallicity estimate.
7 pages, 4 figures, accepted in A&A Comments: Comments: more accurate results with better stellar mass estimates
References in corpus (15)
- Metallicity Calibrations and the Mass-Metallicity Relation for Star-Forming Galaxies
- The Mass-Metallicity Relation at z~2
- Galaxy Pairs in the Sloan Digital Sky Survey I: Star Formation, AGN Fraction, and the Luminosity/Mass-Metallicity Relation
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- LSD: Lyman-break galaxies Stellar populations and Dynamics. I: Mass, metallicity and gas at z~3.1
- The impact of the nitrogen-to-oxygen ratio on ionized nebulae diagnostics based on [NII] emission lines
- Metallicities and Physical Conditions in Star-forming Galaxies at z~1.0-1.5
- The Vimos VLT Deep Survey: Stellar mass segregation and large-scale galaxy environment in the redshift range 0.2<z<1.4
- An Integrated Picture of Star Formation, Metallicity Evolution, and Galactic Stellar Mass Assembly
- The Role of Environment in the Mass-Metallicity Relation
- The mass-metallicity relation of interacting galaxies
- Star Formation Rates and Metallicities of K-selected Star Forming Galaxies at z~2
- Physical properties of galaxies and their evolution in the VIMOS VLT Deep Survey. II. Extending the mass-metallicity relation to the range z=0.89-1.24
- Luminosity-Metallicity Relation for dIrr Galaxies in the Near-Infrared
- Emission-lines calibrations of the Star Formation Rate from the Sloan Digital Sky Survey