International audienceIn search for a synthetic understanding, a scenario for the evolution of the star formation rate and the chemical abundances in galaxies is proposed, combining gas infall from galactic haloes, outflow of gas by supernova explosions, and an oscillatory star formation process. The oscillatory star formation model is a consequence of the modelling of the fractional masses changes of the hot, warm and cold components of the interstellar medium. The derived periods of oscillation vary in the range (0.1-3.0) × 107 yr depending on various parameters existing from giant to dwarf galaxies. The evolution of metallicity varies in giant and dwarf galaxies and depends on the outflow process. Observed abundances in dwarf galaxies ca...
We invistigate different aspects of galaxy formation like star formation histories, galaxy interacti...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
The galactic chemical evolution (GCE) models determine the formation and evolution of the Milky Way ...
International audienceIn search for a synthetic understanding, a scenario for the evolution of the s...
International audienceThe oscillatory model of star formation in giant and dwarf galaxies have been ...
Aims: Dwarf irregular and blue compact galaxies are very interesting objects since they are relative...
Since stellar populations enhance particular element abundances according to the yields and lifetime...
The chemical properties and abundance ratios of galaxies provide important information about their f...
Due to their low gravitational energies, dwarf galaxies are greatly exposed to energetical influenc...
Context. Dwarf irregular galaxies are relatively simple unevolved objects where it is easy to test m...
We predict the metallicity distribution of stars and the age 0metallicity relation for six dwarfsphe...
We develop a new method to account for the finite lifetimes of stars and trace individual abundances...
Aims. Dwarf irregular and blue compact galaxies are very interesting objects since they ar...
Aims. We investigate the chemical evolutionary history of the dwarf spheroidal galaxies Leo 1 and Le...
Context. Analytical models of chemical evolution, including inflow and outflow of gas, are important...
We invistigate different aspects of galaxy formation like star formation histories, galaxy interacti...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
The galactic chemical evolution (GCE) models determine the formation and evolution of the Milky Way ...
International audienceIn search for a synthetic understanding, a scenario for the evolution of the s...
International audienceThe oscillatory model of star formation in giant and dwarf galaxies have been ...
Aims: Dwarf irregular and blue compact galaxies are very interesting objects since they are relative...
Since stellar populations enhance particular element abundances according to the yields and lifetime...
The chemical properties and abundance ratios of galaxies provide important information about their f...
Due to their low gravitational energies, dwarf galaxies are greatly exposed to energetical influenc...
Context. Dwarf irregular galaxies are relatively simple unevolved objects where it is easy to test m...
We predict the metallicity distribution of stars and the age 0metallicity relation for six dwarfsphe...
We develop a new method to account for the finite lifetimes of stars and trace individual abundances...
Aims. Dwarf irregular and blue compact galaxies are very interesting objects since they ar...
Aims. We investigate the chemical evolutionary history of the dwarf spheroidal galaxies Leo 1 and Le...
Context. Analytical models of chemical evolution, including inflow and outflow of gas, are important...
We invistigate different aspects of galaxy formation like star formation histories, galaxy interacti...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
The galactic chemical evolution (GCE) models determine the formation and evolution of the Milky Way ...