In this work we update theL-Galaxiessemi-analytic model (SAM) to better follow thephysical processes responsible for the growth of bulges via disc instabilities (leading to pseudo-bulges) and mergers (leading to classical bulges). We address the former by considering thecontribution of both stellar and gaseous discs in the stability of the galaxy, and we update thelatter by including dissipation of energy in gas-rich mergers. Furthermore, we introduce angularmomentum losses during cooling and find that an accurate match to the observed correlationbetween stellar disc scale length and mass atz∼0.0requires that the gas loses 20%of its initialspecific angular momentum to the corresponding dark matter halo during the formation of thecold gas di...
We quantify the morphological evolution of z ~ 0 massive galaxies (M_*/M_∼ ∼10^11.2 +/- 0.3) from z ...
We have constructed a mass-selected sample of M*>1011 M⊙ galaxies at 1<z<3 in the CANDELS UKIDSS UDS...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamical simulation, Horizon...
In this work we update the L-Galaxies semi-analytic model (SAM) to better follow the physical proces...
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 study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
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...
We examine the spheroid growth and star formation quenching experienced by galaxies since z ∼ 3 by s...
We explore the evolution of the stellar mass-size relation of galaxies of different morphological ty...
We use cosmological SPH simulations to investigate the effects of mergers and interactions on the fo...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
We extend our previous work focused at z ∼ 0, studying the redshift evolution of galaxy dynamical pr...
We quantify the evolution of the stellar mass functions (SMFs) of star-forming and quiescent galaxie...
We quantify the morphological evolution of z ~ 0 massive galaxies (M_*/M_∼ ∼10^11.2 +/- 0.3) from z ...
We have constructed a mass-selected sample of M*>1011 M⊙ galaxies at 1<z<3 in the CANDELS UKIDSS UDS...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamical simulation, Horizon...
In this work we update the L-Galaxies semi-analytic model (SAM) to better follow the physical proces...
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 study the effect of mergers on the morphology of galaxies by means of the simulated merger tree a...
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...
We examine the spheroid growth and star formation quenching experienced by galaxies since z ∼ 3 by s...
We explore the evolution of the stellar mass-size relation of galaxies of different morphological ty...
We use cosmological SPH simulations to investigate the effects of mergers and interactions on the fo...
Galaxies grow primarily via accretion-driven star formation in discs and merger-driven growth of bul...
We extend our previous work focused at z ∼ 0, studying the redshift evolution of galaxy dynamical pr...
We quantify the evolution of the stellar mass functions (SMFs) of star-forming and quiescent galaxie...
We quantify the morphological evolution of z ~ 0 massive galaxies (M_*/M_∼ ∼10^11.2 +/- 0.3) from z ...
We have constructed a mass-selected sample of M*>1011 M⊙ galaxies at 1<z<3 in the CANDELS UKIDSS UDS...
Building galaxy merger trees from a state-of-the-art cosmological hydrodynamical simulation, Horizon...