Context. Galactic disc chemical evolution models generally ignore azimuthal surface density variation that can introduce chemical abundance azimuthal gradients. Recent observations, however, have revealed chemical abundance changes with azimuth in the gas and stellar components of both the Milky Way and external galaxies. Aims. Our aim is to quantify the effects of spiral arm density fluctuations on the azimuthal variations of the oxygen and iron abundances in disc galaxies. Methods. We developed a new 2D Galactic disc chemical evolution model that is capable of following not just radial but also azimuthal inhomogeneities. Results. The density fluctuations resulting from a Milky Way-like N-body disc formation simulation produce azimuthal va...
Context. The majority of chemical evolution models assume that the Galactic disk forms by means of i...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
International audienceAims. We study the role of the radial motions of stars and gas on the evolutio...
Context. Galactic disc chemical evolution models generally ignore azimuthal surface density variatio...
© 2019 The Author(s). Published by Oxford University Press on behalf of the Royal Astronomical Socie...
Context. The distribution of chemical abundances and their variation with time are important tools ...
Context. The distribution of chemical abundances and their variation with time are important tools f...
The spatial distribution of the interstellar medium oxygen abundance is the key to understanding how...
Aims. We study the role of the radial motions of stars and gas on the evolution of abundance profile...
19 pages, 13 figures. Accepted to ApJThe spatial distribution of oxygen in the interstellar medium o...
The spatial distribution of oxygen in the interstellar medium of galaxies is the key to understandin...
We compute the abundance gradients along the disc of the Milky Way by means of the two-infall model:...
International audienceThe connection between some features of the metallicity gradient in the Galact...
Context. Galactic fountains and radial gas flows are very important ingredients for modeling the che...
Context. The majority of chemical evolution models assume that the Galactic disk forms by means of i...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
International audienceAims. We study the role of the radial motions of stars and gas on the evolutio...
Context. Galactic disc chemical evolution models generally ignore azimuthal surface density variatio...
© 2019 The Author(s). Published by Oxford University Press on behalf of the Royal Astronomical Socie...
Context. The distribution of chemical abundances and their variation with time are important tools ...
Context. The distribution of chemical abundances and their variation with time are important tools f...
The spatial distribution of the interstellar medium oxygen abundance is the key to understanding how...
Aims. We study the role of the radial motions of stars and gas on the evolution of abundance profile...
19 pages, 13 figures. Accepted to ApJThe spatial distribution of oxygen in the interstellar medium o...
The spatial distribution of oxygen in the interstellar medium of galaxies is the key to understandin...
We compute the abundance gradients along the disc of the Milky Way by means of the two-infall model:...
International audienceThe connection between some features of the metallicity gradient in the Galact...
Context. Galactic fountains and radial gas flows are very important ingredients for modeling the che...
Context. The majority of chemical evolution models assume that the Galactic disk forms by means of i...
The aim of this work is to present our new series of chemical evolution models computed for spiral a...
International audienceAims. We study the role of the radial motions of stars and gas on the evolutio...