Aims. The chemical evolution of galaxies on a cosmological timescale is still a matter of debate despite the increasing number of available data provided by spectroscopic surveys of star-forming galaxies at different redshifts. The fundamental relations involving metallicity, such as the mass-metallicity relation (MZR) or the fundamental metallicity relation, give controversial results about the reality of evolution of the chemical content of galaxies at a given stellar mass. In this work we shed some light on this issue using the completeness reached by the 20 k bright sample of the zCOSMOS survey and using for the first time the nitrogen-to-oxygen ratio (N/O) as a tracer of the gas phase chemical evolution of galaxies that is independent ...
We present Keck/MOSFIRE K-band spectroscopy of the first mass-selected sample of galaxies at z appro...
We calculate the stellar mass-metallicity relation at five epochs ranging to z ∼ 2.3. We quantify ev...
We analyse the evolution of the oxygen abundance gradient of star-forming galaxies with stellar mass...
Aims. The chemical evolution of galaxies on a cosmological timescale is still a matter of debate des...
Aims. The chemical evolution of galaxies on a cosmological timescale is still a matter of debate des...
We present chemical evolution models aimed at reproducing the observed (N/O) vs. (O/H) abundance pat...
We study the evolution of nitrogen resulting from a set of spiral and irregular galaxy models comput...
This is an electronic version of an article published in Monthly Notices of the Royal Astronomical S...
The main objective of the present work is to ckeck if the star formation efficiency plays a relevant...
© 2022 The Author(s) Published by Oxford University Press on behalf of Royal Astronomical Society. T...
We present a comparison of the nitrogen-to-oxygen ratio (N/O) in 37 high-redshift galaxies at $z\sim...
Recent work suggests that galaxy evolution, and the build-up of stellar mass (M-*) over cosmic time,...
The abundance of nitrogen in the interstellar medium is a powerful probe of star for- mation process...
We discuss the chemical properties of a sample of UV-selected intermediate-redshift (0≲z≲0.4) galaxi...
We present Keck/MOSFIRE K-band spectroscopy of the first mass-selected sample of galaxies at z appro...
We calculate the stellar mass-metallicity relation at five epochs ranging to z ∼ 2.3. We quantify ev...
We analyse the evolution of the oxygen abundance gradient of star-forming galaxies with stellar mass...
Aims. The chemical evolution of galaxies on a cosmological timescale is still a matter of debate des...
Aims. The chemical evolution of galaxies on a cosmological timescale is still a matter of debate des...
We present chemical evolution models aimed at reproducing the observed (N/O) vs. (O/H) abundance pat...
We study the evolution of nitrogen resulting from a set of spiral and irregular galaxy models comput...
This is an electronic version of an article published in Monthly Notices of the Royal Astronomical S...
The main objective of the present work is to ckeck if the star formation efficiency plays a relevant...
© 2022 The Author(s) Published by Oxford University Press on behalf of Royal Astronomical Society. T...
We present a comparison of the nitrogen-to-oxygen ratio (N/O) in 37 high-redshift galaxies at $z\sim...
Recent work suggests that galaxy evolution, and the build-up of stellar mass (M-*) over cosmic time,...
The abundance of nitrogen in the interstellar medium is a powerful probe of star for- mation process...
We discuss the chemical properties of a sample of UV-selected intermediate-redshift (0≲z≲0.4) galaxi...
We present Keck/MOSFIRE K-band spectroscopy of the first mass-selected sample of galaxies at z appro...
We calculate the stellar mass-metallicity relation at five epochs ranging to z ∼ 2.3. We quantify ev...
We analyse the evolution of the oxygen abundance gradient of star-forming galaxies with stellar mass...