We investigate a scenario where the formation of globular clusters (GCs) is triggered by high-speed collisions between infalling atomic-cooling subhalos during the assembly of the main galaxy host, a special dynamical mode of star formation that operates at high gas pressures and is intimately tied to ΛCDM hierarchical galaxy assembly. The proposed mechanism would give origin to "naked" globular clusters as colliding dark matter subhalos and their stars will simply pass through one another while the warm gas within them clashes at highly supersonic speed and decouples from the collisionless component, in a process reminiscent of the Bullet galaxy cluster. We find that the resulting shock-compressed layer cools on a timescale that is typical...
We present a model for the concurrent formation of globular clusters (GCs) and supermassive stars (S...
Globular clusters (GCs), the oldest stellar systems observed in the Milky Way, have long been consid...
Our numerical simulations first demonstrate that the pressure of ISM in a major merger becomes so hi...
We investigate a scenario where the formation of globular clusters (GCs) is triggered by high-speed ...
We investigate a scenario where the formation of globular clusters (GCs) is triggered by high-speed ...
We investigate the spatial, kinematic and chemical properties of globular cluster systems formed in ...
We investigate the formation of metal-poor globular clusters (GCs) at the center of two dark matter ...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
We propose a self-consistent model for globular cluster formation in, but not limited to, our Galaxy...
We present a high-resolution simulation of globular cluster formation in a galaxy merger. For the fi...
We present a model for the concurrent formation of globular clusters (GCs) and supermassive stars (S...
Hubble Space Telescope observations of globular clusters (GCs) in the Antennæ galaxy show clusters o...
We present a model for the concurrent formation of globular clusters (GCs) and supermassive stars (S...
We present a model for the concurrent formation of globular clusters (GCs) and supermassive stars (S...
Globular clusters (GCs), the oldest stellar systems observed in the Milky Way, have long been consid...
Our numerical simulations first demonstrate that the pressure of ISM in a major merger becomes so hi...
We investigate a scenario where the formation of globular clusters (GCs) is triggered by high-speed ...
We investigate a scenario where the formation of globular clusters (GCs) is triggered by high-speed ...
We investigate the spatial, kinematic and chemical properties of globular cluster systems formed in ...
We investigate the formation of metal-poor globular clusters (GCs) at the center of two dark matter ...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
We propose a self-consistent model for globular cluster formation in, but not limited to, our Galaxy...
We present a high-resolution simulation of globular cluster formation in a galaxy merger. For the fi...
We present a model for the concurrent formation of globular clusters (GCs) and supermassive stars (S...
Hubble Space Telescope observations of globular clusters (GCs) in the Antennæ galaxy show clusters o...
We present a model for the concurrent formation of globular clusters (GCs) and supermassive stars (S...
We present a model for the concurrent formation of globular clusters (GCs) and supermassive stars (S...
Globular clusters (GCs), the oldest stellar systems observed in the Milky Way, have long been consid...
Our numerical simulations first demonstrate that the pressure of ISM in a major merger becomes so hi...