Context. The distribution of chemical abundances and their variation with time are important tools for understanding the chemical evolution of galaxies. In particular, the study of chemical evolution models can improve our understanding of the basic assumptions made when modelling our Galaxy and other spirals. Aims. We test a standard chemical evolution model for spiral disks in the Local Universe and study the influence of a threshold gas density and different efficiencies in the star formation rate (SFR) law on radial gradients of abundance, gas, and SFR. The model is then applied to specific galaxies. Methods. We adopt a one-infall chemical evolution model where the Galactic disk forms inside-out by means of infall of gas, and we test di...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
Context. The distribution of chemical abundances and their variation with time are important tools f...
Context. The distribution of chemical abundances and their variation with time are important tools ...
We discuss the main ingredients necessary to build models of chemical evolution of spiral galaxies a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
Based on a simple model of the chemical evolution of the Milky Way disk, we investigate the disk oxy...
We present a new chemical evolution model for the Galaxy that assumes two main infall episodes, for ...
Aims. We aim to study the abundance gradients along the Galactic disk and their dependence upon seve...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
Context. The distribution of chemical abundances and their variation with time are important tools f...
Context. The distribution of chemical abundances and their variation with time are important tools ...
We discuss the main ingredients necessary to build models of chemical evolution of spiral galaxies a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
Based on a simple model of the chemical evolution of the Milky Way disk, we investigate the disk oxy...
We present a new chemical evolution model for the Galaxy that assumes two main infall episodes, for ...
Aims. We aim to study the abundance gradients along the Galactic disk and their dependence upon seve...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...