We compare global predictions from the eagle hydrodynamical simulation, and two semi-analytic (SA) models of galaxy formation, l-galaxies and galform. All three models include the key physical processes for the formation and evolution of galaxies and their parameters are calibrated against a small number of observables at z ≈ 0. The two SA models have been applied to merger trees constructed from the eagle dark matter only simulation. We find that at z ≤ 2, both the galaxy stellar mass functions for stellar masses M* 109.5 M⊙ differ in some instances by an order of magnitude, while the stellar mass–size relation in eagle is a factor of ≈2 tighter than for the two SA models. Our results suggest the need for a revision of how SA models treat...
We present predictions for the two-point correlation function of galaxy clustering as a function of ...
We calculate the colours and luminosities of redshift z = 0.1 galaxies from the EAGLE simulation sui...
We study present-day galaxy clustering in the EAGLE cosmological hydrodynamical simulation. EAGLE’s ...
We compare global predictions from the EAGLE hydrodynamical simulation, and two semi-analytic (SA) m...
We introduce the Virgo Consortium's Evolution and Assembly of GaLaxies and their Environments (EAGLE...
We investigate the evolution of galaxy masses and star formation rates in the Evolution and Assembly...
We present results from thirteen cosmological simulations that explore the parameter space of the "E...
We introduce the Virgo Consortium's EAGLE project, a suite of hydrodynamical simulations that follow...
We present a new version of the GALFORM semi-analytical model of galaxy formation. This brings toget...
We investigate the evolution of galaxy masses and star formation rates in the Evolution and Assembly...
We introduce the Virgo Consortium's Evolution and Assembly of GaLaxies and their Environments (EAGLE...
State-of-the-art hydrodynamical simulations with improved stellar and AGN feedback can reproduce the...
We present results from 13 cosmological simulations that explore the parameter space of the ‘Evoluti...
In this thesis I explore the effects of the various physical processes behind galaxy formation and ...
Recent focus on the importance of cold, unshocked gas accretion in galaxy formation – not explicitly...
We present predictions for the two-point correlation function of galaxy clustering as a function of ...
We calculate the colours and luminosities of redshift z = 0.1 galaxies from the EAGLE simulation sui...
We study present-day galaxy clustering in the EAGLE cosmological hydrodynamical simulation. EAGLE’s ...
We compare global predictions from the EAGLE hydrodynamical simulation, and two semi-analytic (SA) m...
We introduce the Virgo Consortium's Evolution and Assembly of GaLaxies and their Environments (EAGLE...
We investigate the evolution of galaxy masses and star formation rates in the Evolution and Assembly...
We present results from thirteen cosmological simulations that explore the parameter space of the "E...
We introduce the Virgo Consortium's EAGLE project, a suite of hydrodynamical simulations that follow...
We present a new version of the GALFORM semi-analytical model of galaxy formation. This brings toget...
We investigate the evolution of galaxy masses and star formation rates in the Evolution and Assembly...
We introduce the Virgo Consortium's Evolution and Assembly of GaLaxies and their Environments (EAGLE...
State-of-the-art hydrodynamical simulations with improved stellar and AGN feedback can reproduce the...
We present results from 13 cosmological simulations that explore the parameter space of the ‘Evoluti...
In this thesis I explore the effects of the various physical processes behind galaxy formation and ...
Recent focus on the importance of cold, unshocked gas accretion in galaxy formation – not explicitly...
We present predictions for the two-point correlation function of galaxy clustering as a function of ...
We calculate the colours and luminosities of redshift z = 0.1 galaxies from the EAGLE simulation sui...
We study present-day galaxy clustering in the EAGLE cosmological hydrodynamical simulation. EAGLE’s ...