We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree approach first proposed by Moster et al. This method combines N-body cosmological simulations and semi-analytic techniques to extract realistic initial conditions for galaxy mergers. These are then evolved using high-resolution hydrodynamical simulations, which include dark matter, stars, cold gas in the disc and hot gas in the halo. We show that the satellite mass accretion is not as effective as previously thought, as there is substantial stellar stripping before the final merger. The fraction of stellar disc mass transferred to the bulge is quite low, even in the case of a major merger, mainly due to the dispersion of part of the stellar di...
We construct merger trees for galaxies identified in a cosmological hydrodynamic simulation and use ...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamics simulation, Horizon-...
We use cosmological SPH simulations to investigate the effects of mergers and interactions on the fo...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Transformation of discs into spheroids via mergers is a well-accepted element of galaxy formation mo...
We analyse N-body galaxy merger experiments involving disc galaxies. Mergers of disc-bulge-halo mode...
Cosmological hydrodynamical simulations as well as observations indicate that spiral galaxies compri...
The distribution of galaxy morphological types is a key test for models of galaxy formation and evol...
We use semi-analytic models and cosmological merger trees to provide the initial conditions for mult...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamical simulation, Horizon...
In this work we update theL-Galaxiessemi-analytic model (SAM) to better follow thephysical processes...
We study the effects of mergers on the structural properties of disc-like systems by using smooth pa...
We construct merger trees for galaxies identified in a cosmological hydrodynamic simulation and use ...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamics simulation, Horizon-...
We use cosmological SPH simulations to investigate the effects of mergers and interactions on the fo...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Transformation of discs into spheroids via mergers is a well-accepted element of galaxy formation mo...
We analyse N-body galaxy merger experiments involving disc galaxies. Mergers of disc-bulge-halo mode...
Cosmological hydrodynamical simulations as well as observations indicate that spiral galaxies compri...
The distribution of galaxy morphological types is a key test for models of galaxy formation and evol...
We use semi-analytic models and cosmological merger trees to provide the initial conditions for mult...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamical simulation, Horizon...
In this work we update theL-Galaxiessemi-analytic model (SAM) to better follow thephysical processes...
We study the effects of mergers on the structural properties of disc-like systems by using smooth pa...
We construct merger trees for galaxies identified in a cosmological hydrodynamic simulation and use ...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamics simulation, Horizon-...
We use cosmological SPH simulations to investigate the effects of mergers and interactions on the fo...