The interplay between cosmic gas accretion onto galaxies and galaxy mergers drives the observed morphological diversity of galaxies. By comparing the state-of-the-art hydrodynamical cosmological simulations Horizon-AGN and Horizon-noAGN, we unambiguously identify the critical role of Active Galactic Nuclei (AGN) in setting up the correct galaxy morphology for the massive end of the population. With AGN feedback, typical kinematic and morpho-metric properties of galaxy populations as well as the galaxy-halo mass relation are in much better agreement with observations. Only AGN feedback allows massive galaxies at the center of groups and clusters to become ellipticals, while without AGN feedback those galaxies reform discs. It is the merger-e...
Understanding the processes that trigger morphological transformation is central to understanding ho...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
The interplay between cosmic gas accretion onto galaxies and galaxy mergers drives the observed morp...
The interplay between cosmic gas accretion onto galaxies and galaxy mergers drives the observed morp...
The interplay between cosmic gas accretion on to galaxies and galaxy mergers drives the observed mor...
The interplay between cosmic gas accretion on to galaxies and galaxy mergers drives the observed mor...
International audienceThe interplay between cosmic gas accretion on to galaxies and galaxy mergers d...
International audienceThe interplay between cosmic gas accretion on to galaxies and galaxy mergers d...
We study the evolution of simulated galaxies in the presence of feedback from active galactic nuclei...
International audienceIn order to understand the physical mechanisms at work during the formation of...
International audienceIn order to understand the physical mechanisms at work during the formation of...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
International audienceUnderstanding the processes that trigger morphological transformation is centr...
Understanding the processes that trigger morphological transformation is central to understanding ho...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
The interplay between cosmic gas accretion onto galaxies and galaxy mergers drives the observed morp...
The interplay between cosmic gas accretion onto galaxies and galaxy mergers drives the observed morp...
The interplay between cosmic gas accretion on to galaxies and galaxy mergers drives the observed mor...
The interplay between cosmic gas accretion on to galaxies and galaxy mergers drives the observed mor...
International audienceThe interplay between cosmic gas accretion on to galaxies and galaxy mergers d...
International audienceThe interplay between cosmic gas accretion on to galaxies and galaxy mergers d...
We study the evolution of simulated galaxies in the presence of feedback from active galactic nuclei...
International audienceIn order to understand the physical mechanisms at work during the formation of...
International audienceIn order to understand the physical mechanisms at work during the formation of...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
International audienceUnderstanding the processes that trigger morphological transformation is centr...
Understanding the processes that trigger morphological transformation is central to understanding ho...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...