The advent of a new generation of large-scale galaxy surveys is pushing cosmological numerical simulations in an uncharted territory. The simultaneous requirements of high resolution and very large volume pose serious technical challenges, due to their computational and data storage demand. In this paper, we present a novel approach dubbed Dynamic Zoom Simulations – or DZS – developed to tackle these issues. Our method is tailored to the production of lightcone outputs from N-body numerical simulations, which allow for a more efficient storage and post-processing compared to standard comoving snapshots, and more directly mimic the format of survey data. In DZS, the resolution of the simulation is dynamically decreasedoutside the lightcone s...
We present the UNIT N-body cosmological simulations project, designed to provide precise predictions...
We present a new N-body simulation from the MICE collaboration, the MICE Grand Challenge (MICE-GC), ...
We present results of large N-body-hydrodynamic simulations of galaxy formation. Our simulations fol...
The advent of a new generation of large-scale galaxy surveys is pushing cosmological numerical simul...
42 pages, 16 figures, accepted for publication in Space Science Reviews, special issue "Clusters of ...
Existing cosmological simulation methods lack a high degree of parallelism due to the long-range nat...
In paper I of this series (Fosalba et al. 2013), we presented a new N-body lightcone simulation from...
Cosmological “zoom-in” simulations are a modern class of numerical simulations with many interesting...
Context. Existing cosmological simulation methods lack a high degree of parallelism due to the long-...
Horizon Run 5 (HR5) is a cosmological hydrodynamical simulation which captures the properties of the...
Horizon Run 5 (HR5) is a cosmological hydrodynamical simulation that captures the properties of the ...
The Dark Sky Simulations are an ongoing series of cosmological N-body simulations designed to provid...
International audienceHydrodynamical cosmological simulations are increasing their level of realism ...
Horizon Run 5 (HR5) is a cosmological hydrodynamical simulation which captures the properties of the...
We present the UNIT N-body cosmological simulations project, designed to provide precise predictions...
We present a new N-body simulation from the MICE collaboration, the MICE Grand Challenge (MICE-GC), ...
We present results of large N-body-hydrodynamic simulations of galaxy formation. Our simulations fol...
The advent of a new generation of large-scale galaxy surveys is pushing cosmological numerical simul...
42 pages, 16 figures, accepted for publication in Space Science Reviews, special issue "Clusters of ...
Existing cosmological simulation methods lack a high degree of parallelism due to the long-range nat...
In paper I of this series (Fosalba et al. 2013), we presented a new N-body lightcone simulation from...
Cosmological “zoom-in” simulations are a modern class of numerical simulations with many interesting...
Context. Existing cosmological simulation methods lack a high degree of parallelism due to the long-...
Horizon Run 5 (HR5) is a cosmological hydrodynamical simulation which captures the properties of the...
Horizon Run 5 (HR5) is a cosmological hydrodynamical simulation that captures the properties of the ...
The Dark Sky Simulations are an ongoing series of cosmological N-body simulations designed to provid...
International audienceHydrodynamical cosmological simulations are increasing their level of realism ...
Horizon Run 5 (HR5) is a cosmological hydrodynamical simulation which captures the properties of the...
We present the UNIT N-body cosmological simulations project, designed to provide precise predictions...
We present a new N-body simulation from the MICE collaboration, the MICE Grand Challenge (MICE-GC), ...
We present results of large N-body-hydrodynamic simulations of galaxy formation. Our simulations fol...