We use semi-analytic models and cosmological merger trees to provide the initial conditions for multimerger numerical hydrodynamic simulations, and exploit these simulations to explore the effect of galaxy interaction and merging on star formation (SF). We compute numerical realizations of 12 merger trees from z = 1.5 to 0. We include the effects of the large hot gaseous halo around all galaxies, following recent observations and predictions of galaxy formation models. We find that including the hot gaseous halo has a number of important effects. First, as expected, the star formation rate on long time-scales is increased due to cooling of the hot halo and refuelling of the cold gas reservoir. Secondly, we find that interactions do not alwa...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers by nu...
We use high-resolution cosmological hydrodynamical simulations of Milky-Way-sized galaxies with vary...
CONTEXT: Galaxy mergers and interactions are an integral part of our basic understanding of how gala...
We use semi-analytic models and cosmological merger trees to provide the initial conditions for mult...
Cosmological hydrodynamical simulations as well as observations indicate that spiral galaxies compri...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
In this thesis we use cosmological merger trees and semi-analytic models of galaxy formation to prov...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We use cosmological SPH simulations to study the effects of mergers in the star formation history of...
Using cosmological hydrodynamical simulations, we investigate the effects of hierarchical aggregatio...
A halo merger tree forms the essential backbone of a semi-analytic model for galaxy formation and ev...
To better understand the role that interactions between galaxies plays in their overall evolution re...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Using numerical simulation, we study the development of gaseous inflows and triggering of starburst ...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers, by n...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers by nu...
We use high-resolution cosmological hydrodynamical simulations of Milky-Way-sized galaxies with vary...
CONTEXT: Galaxy mergers and interactions are an integral part of our basic understanding of how gala...
We use semi-analytic models and cosmological merger trees to provide the initial conditions for mult...
Cosmological hydrodynamical simulations as well as observations indicate that spiral galaxies compri...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
In this thesis we use cosmological merger trees and semi-analytic models of galaxy formation to prov...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We use cosmological SPH simulations to study the effects of mergers in the star formation history of...
Using cosmological hydrodynamical simulations, we investigate the effects of hierarchical aggregatio...
A halo merger tree forms the essential backbone of a semi-analytic model for galaxy formation and ev...
To better understand the role that interactions between galaxies plays in their overall evolution re...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Using numerical simulation, we study the development of gaseous inflows and triggering of starburst ...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers, by n...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers by nu...
We use high-resolution cosmological hydrodynamical simulations of Milky-Way-sized galaxies with vary...
CONTEXT: Galaxy mergers and interactions are an integral part of our basic understanding of how gala...