We compare the results of various cosmological gas-dynamical codes used to simulate the formation of a galaxy in the Λ cold dark matter structure formation paradigm. The various runs (13 in total) differ in their numerical hydrodynamical treatment [smoothed particle hydrodynamics (SPH), moving mesh and adaptive mesh refinement] but share the same initial conditions and adopt in each case their latest published model of gas cooling, star formation and feedback. Despite the common halo assembly history, we find large code-to-code variations in the stellar mass, size, morphology and gas content of the galaxy at z= 0, due mainly to the different implementations of star formation and feedback. Compared with observation, most codes tend to produc...
We present the McMaster Unbiased Galaxy Simulations (MUGS), the first nine galaxies of an unbiased s...
We used fully cosmological, high-resolution N-body + smooth particle hydrodynamic (SPH) simulations ...
This dissertation explores cosmological simulations of galaxy formation, focusing on the asymptotic ...
We compare the results of various cosmological gas-dynamical codes used to simulate the formation of...
We compare the results of various cosmological gas-dynamical codes used to simulate the formation of...
We review the progress in modeling the galaxy population in hydrodynamical simulations of the ΛCDM c...
We investigate phenomenological models of star formation and supernova feedback in N-body/SPH simula...
We present a series of high-resolution cosmological simulations of galaxy formation to z = 0, spanni...
We investigate how the way galaxies acquire their gas across cosmic time in cosmological hydrodynami...
We present the mufasa suite of cosmological hydrodynamic simulations, which employs the gizmo meshle...
Astronomy and Astrophysics 577.(2015): A3 reproduced with permission from Astronomy & Astrophysics, ...
We present the study of a set of N-body+smoothed particle hydrodynamics simulations of a Milky Way-l...
Direct comparisons between galaxy simulations and observations that both reach scales ≲100 pc are st...
Semi-analytical (SA) galaxy formation models have wide applications, and they are complementary to h...
Recent focus on the importance of cold, unshocked gas accretion in galaxy formation – not explicitly...
We present the McMaster Unbiased Galaxy Simulations (MUGS), the first nine galaxies of an unbiased s...
We used fully cosmological, high-resolution N-body + smooth particle hydrodynamic (SPH) simulations ...
This dissertation explores cosmological simulations of galaxy formation, focusing on the asymptotic ...
We compare the results of various cosmological gas-dynamical codes used to simulate the formation of...
We compare the results of various cosmological gas-dynamical codes used to simulate the formation of...
We review the progress in modeling the galaxy population in hydrodynamical simulations of the ΛCDM c...
We investigate phenomenological models of star formation and supernova feedback in N-body/SPH simula...
We present a series of high-resolution cosmological simulations of galaxy formation to z = 0, spanni...
We investigate how the way galaxies acquire their gas across cosmic time in cosmological hydrodynami...
We present the mufasa suite of cosmological hydrodynamic simulations, which employs the gizmo meshle...
Astronomy and Astrophysics 577.(2015): A3 reproduced with permission from Astronomy & Astrophysics, ...
We present the study of a set of N-body+smoothed particle hydrodynamics simulations of a Milky Way-l...
Direct comparisons between galaxy simulations and observations that both reach scales ≲100 pc are st...
Semi-analytical (SA) galaxy formation models have wide applications, and they are complementary to h...
Recent focus on the importance of cold, unshocked gas accretion in galaxy formation – not explicitly...
We present the McMaster Unbiased Galaxy Simulations (MUGS), the first nine galaxies of an unbiased s...
We used fully cosmological, high-resolution N-body + smooth particle hydrodynamic (SPH) simulations ...
This dissertation explores cosmological simulations of galaxy formation, focusing on the asymptotic ...