We introduce the Illustris Project, a series of large-scale hydrodynamical simulations of galaxy formation. The highest resolution simulation, Illustris-1, covers a volume of (106.5 Mpc)3, has a dark mass resolution of 6.26 × 106M⊙, and an initial baryonic matter mass resolution of 1.26 × 106M⊙. At z = 0 gravitational forces are softened on scales of 710 pc, and the smallest hydrodynamical gas cells have an extent of 48 pc. We follow the dynamical evolution of 2 × 18203 resolution elements and in addition passively evolve 18203 Monte Carlo tracer particles reaching a total particle count of more than 18 billion. The galaxy formation model includes: Primordial and metal-line cooling with self-shielding corrections, stellar evolution, stellar...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
International audienceHydrodynamical cosmological simulations are increasing their level of realism ...
none3siThis article has been accepted for publication in MNRAS ©: 2013 The Author(s) Published by Ox...
We introduce the Illustris Project, a series of large-scale hydrodynamical simulations of galaxy for...
We introduce the Illustris Project, a series of large-scale hydrodynamical simulations of galaxy for...
We present an overview of galaxy evolution across cosmic time in the Illustris simulation. Illustris...
We present an overview of galaxy evolution across cosmic time in the Illustris Simu-lation. Illustri...
We present an overview of galaxy evolution across cosmic time in the Illustris simulation. Illustris...
We study the properties of black holes and their host galaxies across cosmic time in the Illustris s...
none15si©2015 Elsevier B.V. All rights reserved.We present the full public release of all data from ...
We introduce an updated physical model to simulate the formation and evolution of galaxies in cosmo...
We introduce the first two simulations of the IllustrisTNG project, a next generation of cosmologica...
The co-evolution of galaxies and the intergalactic medium as a function of environment is studied us...
Hydrodynamical cosmological simulations are increasing their level of realism by considering more ph...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
International audienceHydrodynamical cosmological simulations are increasing their level of realism ...
none3siThis article has been accepted for publication in MNRAS ©: 2013 The Author(s) Published by Ox...
We introduce the Illustris Project, a series of large-scale hydrodynamical simulations of galaxy for...
We introduce the Illustris Project, a series of large-scale hydrodynamical simulations of galaxy for...
We present an overview of galaxy evolution across cosmic time in the Illustris simulation. Illustris...
We present an overview of galaxy evolution across cosmic time in the Illustris Simu-lation. Illustri...
We present an overview of galaxy evolution across cosmic time in the Illustris simulation. Illustris...
We study the properties of black holes and their host galaxies across cosmic time in the Illustris s...
none15si©2015 Elsevier B.V. All rights reserved.We present the full public release of all data from ...
We introduce an updated physical model to simulate the formation and evolution of galaxies in cosmo...
We introduce the first two simulations of the IllustrisTNG project, a next generation of cosmologica...
The co-evolution of galaxies and the intergalactic medium as a function of environment is studied us...
Hydrodynamical cosmological simulations are increasing their level of realism by considering more ph...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
International audienceHydrodynamical cosmological simulations are increasing their level of realism ...
none3siThis article has been accepted for publication in MNRAS ©: 2013 The Author(s) Published by Ox...