Galaxy formation models typically assume that the size and rotation speed of galaxy discs are largely dictated by the mass, concentration and spin of their surrounding dark matter haloes. Equally important, however, is the fraction of baryons in the halo that collect into the central galaxy, as well as the net angular momentum that they are able to retain during its assembly process. We explore the latter using a set of four large cosmological N-body/gasdynamical simulations drawn from the OverWhelmingly Large Simulations project. These runs differ only in their implementation of feedback from supernovae (SNe). We find that, when expressed as fractions of their virial values, galaxy mass and net angular momentum are tightly correlated. Gala...
We investigated the disc-halo connection in massive (M∗ > 5 × 1010 M⊙) disc galaxies from the cos...
We introduce a suite of 30 cosmological magneto-hydrodynamical zoom simulations of the formation of ...
Gas discs of late-type galaxies are flared, with scale heights increasing with the distance from the...
Galaxy formation models typically assume that the size and rotation speed of galaxy discs are largel...
We use a disc galaxy evolution model to investigate the impact of mass outflows (a.k.a. feedback) on...
In ACDM cosmology, to first order, galaxies form out of the cooling of baryons within the virial rad...
Context. Galaxy formation in the current cosmological paradigm is a verycomplex process in which inf...
Context. Galaxy formation in the current cosmological paradigm is a very complex process in which in...
We study the angular-momentum (AM) buildup in high-z massive galaxies using high-resolution cosmolog...
International audienceIn ΛCDM cosmology, to first order, galaxies form out of the cooling of baryons...
The major morphological features of a galaxy are thought to be determined by the assembly history an...
We introduce a suite of 30 cosmological magneto-hydrodynamical zoom simulations of the formation of ...
We use hydrodynamic cosmological zoom-in simulations from the Feedback in Realistic Environments pro...
We investigated the disc-halo connection in massive (M∗ > 5 × 1010 M⊙) disc galaxies from the cos...
We introduce a suite of 30 cosmological magneto-hydrodynamical zoom simulations of the formation of ...
Gas discs of late-type galaxies are flared, with scale heights increasing with the distance from the...
Galaxy formation models typically assume that the size and rotation speed of galaxy discs are largel...
We use a disc galaxy evolution model to investigate the impact of mass outflows (a.k.a. feedback) on...
In ACDM cosmology, to first order, galaxies form out of the cooling of baryons within the virial rad...
Context. Galaxy formation in the current cosmological paradigm is a verycomplex process in which inf...
Context. Galaxy formation in the current cosmological paradigm is a very complex process in which in...
We study the angular-momentum (AM) buildup in high-z massive galaxies using high-resolution cosmolog...
International audienceIn ΛCDM cosmology, to first order, galaxies form out of the cooling of baryons...
The major morphological features of a galaxy are thought to be determined by the assembly history an...
We introduce a suite of 30 cosmological magneto-hydrodynamical zoom simulations of the formation of ...
We use hydrodynamic cosmological zoom-in simulations from the Feedback in Realistic Environments pro...
We investigated the disc-halo connection in massive (M∗ > 5 × 1010 M⊙) disc galaxies from the cos...
We introduce a suite of 30 cosmological magneto-hydrodynamical zoom simulations of the formation of ...
Gas discs of late-type galaxies are flared, with scale heights increasing with the distance from the...