We present the results of a self-consistent N-body simulation following the evolution of a primordial population of thick-disc globular clusters (GCs). We study how the internal properties of such clusters evolve under the action of mutual interactions, while they orbit a Milky Way-like galaxy. For the first time, through analytical and numerical considerations, we find that physical encounters between disc GCs are a crucial factor that contributed to the shape of the current properties of the Galactic GC system. Close passages or motion on similar orbits may indeed have a significant impact on the internal structure of clusters, producing multiple gravitationally bound sub-populations through the exchange of mass and even mergers. Our mode...
We propose a self-consistent model for globular cluster formation in, but not limited to, our Galaxy...
We present the results of detailed N-body simulations regarding the interaction of four massive glob...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
International audienceWe present the results of a self-consistent N-body simulation following the ev...
International audienceWe present the results of a self-consistent N-body simulation following the ev...
International audienceWe present the results of a self-consistent N-body simulation following the ev...
Globular clusters (GCs), the oldest stellar systems observed in the Milky Way, have long been consid...
We investigate the spatial, kinematic and chemical properties of globular cluster systems formed in ...
Hubble Space Telescope observations of globular clusters (GCs) in the Antennae galaxy show clusters ...
We present a high-resolution simulation of globular cluster formation in a galaxy merger. For the fi...
The dynamics of the encounter of two globular clusters made up of 105 stars each in the bulge of an ...
Hubble Space Telescope observations of globular clusters (GCs) in the Antennæ galaxy show clusters o...
Preliminary results are presented about a fully self-consistent N-body simulation of a sample of fou...
We present a high-resolution simulation of globular cluster formation in a galaxy merger. For the fi...
The vast majority of galaxies contains large populations of stellar clusters, which are bound groups...
We propose a self-consistent model for globular cluster formation in, but not limited to, our Galaxy...
We present the results of detailed N-body simulations regarding the interaction of four massive glob...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
International audienceWe present the results of a self-consistent N-body simulation following the ev...
International audienceWe present the results of a self-consistent N-body simulation following the ev...
International audienceWe present the results of a self-consistent N-body simulation following the ev...
Globular clusters (GCs), the oldest stellar systems observed in the Milky Way, have long been consid...
We investigate the spatial, kinematic and chemical properties of globular cluster systems formed in ...
Hubble Space Telescope observations of globular clusters (GCs) in the Antennae galaxy show clusters ...
We present a high-resolution simulation of globular cluster formation in a galaxy merger. For the fi...
The dynamics of the encounter of two globular clusters made up of 105 stars each in the bulge of an ...
Hubble Space Telescope observations of globular clusters (GCs) in the Antennæ galaxy show clusters o...
Preliminary results are presented about a fully self-consistent N-body simulation of a sample of fou...
We present a high-resolution simulation of globular cluster formation in a galaxy merger. For the fi...
The vast majority of galaxies contains large populations of stellar clusters, which are bound groups...
We propose a self-consistent model for globular cluster formation in, but not limited to, our Galaxy...
We present the results of detailed N-body simulations regarding the interaction of four massive glob...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...