Stars in disks of spiral galaxies are usually assumed to remain roughly at their birth radii. This assumption is built into decades of modeling of the evolution of stellar populations in our own Galaxy and in external systems. We present results from self-consistent high-resolution N-body + smooth particle hydrodynamics simulations of disk formation, in which stars migrate across significant galactocentric distances due to resonant scattering with transient spiral arms, while preserving their circular orbits. We investigate the implications of such migrations for observed stellar populations. Radial migration provides an explanation for the observed flatness and spread in the age-metallicity relation and the relative lack of metal-poor star...
In recent years, effects such as the radial migration of stars in disks have been recognized as impo...
Stellar radial migration plays an important role in reshaping a galaxy's structure and the radial di...
We develop and apply a model to quantify the global efficiency of radial orbit migration among stars...
We present four studies of radial migration of stars in thickened galactic disks and its relation to...
We identify migrating stars in an N-body hybrid simulation of a Milky-Way-like disk. Outward migrati...
Non-axisymmetric components, such as spirals and central bars, play a major role in shaping galactic...
We use numerical simulations to examine the effects of radial migration on the vertical structure of...
<p>Radial stellar migration in galactic discs has received much attention in studies of galactic dyn...
International audienceWe study the role of radial migration of stars on the chemical evolution of th...
The redistribution of stars in galactic disks is an important aspect of disk galaxy evolution. Stars...
We study the radial migration of stars driven by recurring multi-arm spiral features in an exponenti...
International audienceContext. We study the role of radial migration of stars on the chemical evolut...
We investigate the evolution of galactic discs in N-body tree-SPH simulations. We find that discs, i...
Context. We study the role of radial migration of stars on the chemical evolution of the Milky Way d...
In this proceeding I will shortly discuss radial migration in disc galaxies and the Milky Way in par...
In recent years, effects such as the radial migration of stars in disks have been recognized as impo...
Stellar radial migration plays an important role in reshaping a galaxy's structure and the radial di...
We develop and apply a model to quantify the global efficiency of radial orbit migration among stars...
We present four studies of radial migration of stars in thickened galactic disks and its relation to...
We identify migrating stars in an N-body hybrid simulation of a Milky-Way-like disk. Outward migrati...
Non-axisymmetric components, such as spirals and central bars, play a major role in shaping galactic...
We use numerical simulations to examine the effects of radial migration on the vertical structure of...
<p>Radial stellar migration in galactic discs has received much attention in studies of galactic dyn...
International audienceWe study the role of radial migration of stars on the chemical evolution of th...
The redistribution of stars in galactic disks is an important aspect of disk galaxy evolution. Stars...
We study the radial migration of stars driven by recurring multi-arm spiral features in an exponenti...
International audienceContext. We study the role of radial migration of stars on the chemical evolut...
We investigate the evolution of galactic discs in N-body tree-SPH simulations. We find that discs, i...
Context. We study the role of radial migration of stars on the chemical evolution of the Milky Way d...
In this proceeding I will shortly discuss radial migration in disc galaxies and the Milky Way in par...
In recent years, effects such as the radial migration of stars in disks have been recognized as impo...
Stellar radial migration plays an important role in reshaping a galaxy's structure and the radial di...
We develop and apply a model to quantify the global efficiency of radial orbit migration among stars...