International audienceThe distribution of galaxy morphological types is a key test for models of galaxy formation and evolution, providing strong constraints on the relative contribution of different physical processes responsible for the growth of the spheroidal components. In this paper, we make use of a suite of semi-analytic models to study the efficiency of galaxy mergers in disrupting galaxy discs and building galaxy bulges. In particular, we compare standard prescriptions usually adopted in semi-analytic models, with new prescriptions proposed by Kannan et al., based on results from high-resolution hydrodynamical simulations, and we show that these new implementations reduce the efficiency of bulge formation through mergers. In addit...
We present a study of the effects of mergers and interactions on the mass distribution of galactic s...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamics simulation, Horizon-...
We employ numerical simulations of galaxy mergers to explore the effect of galaxy mass ratio on merg...
The distribution of galaxy morphological types is a key test for models of galaxy formation and evol...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We use a suite of semi-empirical models to predict the galaxy-galaxy merger rate and relative contri...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamical simulation, Horizon...
© 2019 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Societ...
We construct merger trees for galaxies identified in a cosmological hydrodynamical simulation and us...
Transformation of discs into spheroids via mergers is a well-accepted element of galaxy formation mo...
We use semianalytical modeling techniques to investigate the progenitor morphologies of present...
We present a study of the effects of mergers and interactions on the mass distribution of galactic s...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamics simulation, Horizon-...
We employ numerical simulations of galaxy mergers to explore the effect of galaxy mass ratio on merg...
The distribution of galaxy morphological types is a key test for models of galaxy formation and evol...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
We use a suite of semi-empirical models to predict the galaxy-galaxy merger rate and relative contri...
We study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamical simulation, Horizon...
© 2019 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Societ...
We construct merger trees for galaxies identified in a cosmological hydrodynamical simulation and us...
Transformation of discs into spheroids via mergers is a well-accepted element of galaxy formation mo...
We use semianalytical modeling techniques to investigate the progenitor morphologies of present...
We present a study of the effects of mergers and interactions on the mass distribution of galactic s...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamics simulation, Horizon-...
We employ numerical simulations of galaxy mergers to explore the effect of galaxy mass ratio on merg...