We study the structure, age and metallicity gradients, and dynamical evolution using a cosmological zoom-in simulation of a Milky Way-mass galaxy from the Feedback in Realistic Environments project. In the simulation, stars older than 6 Gyr were formed in a chaotic, bursty mode and have the largest vertical scaleheights (1.5-2.5 kpc) by z = 0, while stars younger than 6 Gyr were formed in a relatively calm, stable disc. The vertical scaleheight increases with stellar age at all radii, because (1) stars that formed earlier were thicker 'at birth', and (2) stars were kinematically heated to an even thicker distribution after formation. Stars of the same age are thicker in the outer disc than in the inner disc (flaring). These lead to positive...
We perform controlled N-body simulations of disc galaxies growing within live dark matter (DM) haloe...
Context. The stellar metallicity gradients of disc galaxies provide information on disc as...
Context. The stellar metallicity gradients of disc galaxies provide information on disc as...
We study the structure, age and metallicity gradients, and dynamical evolution using a cosmological ...
We study the structure, age and metallicity gradients, and dynamical evolution using a cosmological ...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
This thesis presents a computational study of the formation and evolution of Milky-Way-mass galaxies...
This thesis presents a computational study of the formation and evolution of Milky-Way-mass galaxies...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
We perform controlled N-body simulations of disc galaxies growing within live dark matter (DM) haloe...
Context. The stellar metallicity gradients of disc galaxies provide information on disc as...
Context. The stellar metallicity gradients of disc galaxies provide information on disc as...
We study the structure, age and metallicity gradients, and dynamical evolution using a cosmological ...
We study the structure, age and metallicity gradients, and dynamical evolution using a cosmological ...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
International audienceAims. Using a suite of cosmological chemodynamical disc galaxy simulations, we...
This thesis presents a computational study of the formation and evolution of Milky-Way-mass galaxies...
This thesis presents a computational study of the formation and evolution of Milky-Way-mass galaxies...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
We perform controlled N-body simulations of disc galaxies growing within live dark matter (DM) haloe...
Context. The stellar metallicity gradients of disc galaxies provide information on disc as...
Context. The stellar metallicity gradients of disc galaxies provide information on disc as...