We use spatially and temporally resolved maps of stellar population properties of 300 galaxies from the CALIFA integral field survey to investigate how the stellar metallicity (Z) relates to the total stellar mass (M) and the local mass surface density (μ) in both spheroidal- and disk-dominated galaxies. The galaxies are shown to follow a clear stellar mass–metallicity relation (MZR) over the hole 109–1012 M range. This relation is steeper than the one derived from nebular abundances, which is similar to the flatter stellar MZR derived when we consider only young stars. We also find a strong relation between the local values of μ and Z (the μZR), betraying the influence of local factors in determining Z. This shows that both local (μ-driven...
Observed and simulated galaxies exhibit correlations between stellar mass, metallicity, and morpholo...
We use high-resolution cosmological zoom-in simulations from the Feedback in Realistic Environment (...
In this work we study the stellar mass -- metallicity relation (MZR) of an extended sample of star-f...
We use spatially and temporally resolved maps of stellar population properties of 300 galaxies from ...
We present the stellar surface mass density versus gas metallicity (Σ*-Z) relation for more than 500...
Various different physical processes contribute to the star formation and stellar mass assembly hist...
The distribution of stellar metallicities within and across galaxies is an excellent relic of the ch...
We present an updated version of the mass-metallicity (MZ) relation using integral field spectroscop...
We studied the global and local ℳ-Z relation based on the first data available from the CALIFA surve...
We have studied the radial structure of the stellar mass surface density (μ∗) and stellar population...
This is an electronic version of an article published in Astronomy and Astrophysics. Sánchez, S.F. e...
We investigate the relationships between stellar mass, gas-phase oxygen abundance (metallicity), sta...
We present the stellar mass–stellar metallicity relationship (MZR) in the galaxy cluster Cl0024+1654...
We study the effect of surface brightness on the mass–metallicity relation using nearby galaxies who...
We analyse the evolutionary history of galaxies formed in a hierarchical scenario consistent with th...
Observed and simulated galaxies exhibit correlations between stellar mass, metallicity, and morpholo...
We use high-resolution cosmological zoom-in simulations from the Feedback in Realistic Environment (...
In this work we study the stellar mass -- metallicity relation (MZR) of an extended sample of star-f...
We use spatially and temporally resolved maps of stellar population properties of 300 galaxies from ...
We present the stellar surface mass density versus gas metallicity (Σ*-Z) relation for more than 500...
Various different physical processes contribute to the star formation and stellar mass assembly hist...
The distribution of stellar metallicities within and across galaxies is an excellent relic of the ch...
We present an updated version of the mass-metallicity (MZ) relation using integral field spectroscop...
We studied the global and local ℳ-Z relation based on the first data available from the CALIFA surve...
We have studied the radial structure of the stellar mass surface density (μ∗) and stellar population...
This is an electronic version of an article published in Astronomy and Astrophysics. Sánchez, S.F. e...
We investigate the relationships between stellar mass, gas-phase oxygen abundance (metallicity), sta...
We present the stellar mass–stellar metallicity relationship (MZR) in the galaxy cluster Cl0024+1654...
We study the effect of surface brightness on the mass–metallicity relation using nearby galaxies who...
We analyse the evolutionary history of galaxies formed in a hierarchical scenario consistent with th...
Observed and simulated galaxies exhibit correlations between stellar mass, metallicity, and morpholo...
We use high-resolution cosmological zoom-in simulations from the Feedback in Realistic Environment (...
In this work we study the stellar mass -- metallicity relation (MZR) of an extended sample of star-f...