We studied the global and local ℳ-Z relation based on the first data available from the CALIFA survey (150 galaxies). This survey provides integral field spectroscopy of the complete optical extent of each galaxy (up to 2−3 effective radii), with a resolution high enough to separate individual H II regions and/or aggregations. About 3000 individual H II regions have been detected. The spectra cover the wavelength range between [OII]3727 and [SII]6731, with a sufficient signal-to-noise ratio to derive the oxygen abundance and star-formation rate associated with each region. In addition, we computed the integrated and spatially resolved stellar masses (and surface densities) based on SDSS photometric data. We explore the relations between the...
In this study, we investigate the relation between stellar mass, dust extinction, and star formation...
We present results on the z ∼ 2.3 mass-metallicity relation (MZR) using early observations from the ...
30We investigate the relationships between stellar mass, gas-phase oxygen abundance (metallicity), s...
International audienceWe studied the global and local M-Z relation based on the first data available...
We studied the global and local M-Z relation based on the first data available from the CALIFA surve...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
In this work we study the stellar mass -- metallicity relation (MZR) of an extended sample of star-f...
Observations show that galaxies follow a mass-metallicity relation over a wide range of masses. One ...
International audienceWe investigate the relationship between stellar mass, metallicity and gas cont...
We present an analysis of the chemical abundance properties of ≈650 star-forming galaxies at z ≈ 0.6...
We investigate the relationship between stellar mass, metallicity and gas content for a magnitude-an...
We use spatially and temporally resolved maps of stellar population properties of 300 galaxies from ...
In this contribution, we present the first census of oxygen in star-forming galaxies in the local un...
We present an updated version of the mass-metallicity (MZ) relation using integral field spectroscop...
We calculate the stellar mass-metallicity relation at five epochs ranging to z ∼ 2.3. We quantify ev...
In this study, we investigate the relation between stellar mass, dust extinction, and star formation...
We present results on the z ∼ 2.3 mass-metallicity relation (MZR) using early observations from the ...
30We investigate the relationships between stellar mass, gas-phase oxygen abundance (metallicity), s...
International audienceWe studied the global and local M-Z relation based on the first data available...
We studied the global and local M-Z relation based on the first data available from the CALIFA surve...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
In this work we study the stellar mass -- metallicity relation (MZR) of an extended sample of star-f...
Observations show that galaxies follow a mass-metallicity relation over a wide range of masses. One ...
International audienceWe investigate the relationship between stellar mass, metallicity and gas cont...
We present an analysis of the chemical abundance properties of ≈650 star-forming galaxies at z ≈ 0.6...
We investigate the relationship between stellar mass, metallicity and gas content for a magnitude-an...
We use spatially and temporally resolved maps of stellar population properties of 300 galaxies from ...
In this contribution, we present the first census of oxygen in star-forming galaxies in the local un...
We present an updated version of the mass-metallicity (MZ) relation using integral field spectroscop...
We calculate the stellar mass-metallicity relation at five epochs ranging to z ∼ 2.3. We quantify ev...
In this study, we investigate the relation between stellar mass, dust extinction, and star formation...
We present results on the z ∼ 2.3 mass-metallicity relation (MZR) using early observations from the ...
30We investigate the relationships between stellar mass, gas-phase oxygen abundance (metallicity), s...