Skies And Universes: Accessing cosmological simulations and theoretical predictions
Anatoly Klypin, Francisco Prada, Johan Comparat

TL;DR
This paper discusses the importance of cosmological simulations in understanding the universe, highlights the challenges of data sharing, and demonstrates how public access to simulation data can be effectively expanded through community efforts and modest resources.
Contribution
It introduces a platform for sharing cosmological simulation data, including large datasets like Bolshoi and MultiDark, to enhance accessibility and collaborative research.
Findings
Public access to simulation data is feasible with modest resources.
The platform hosts terabytes of simulation data and observational mimicking results.
Community-driven data sharing can significantly benefit cosmological research.
Abstract
Numerical simulations play a key important role in modern cosmology. Examples are plenty including the cosmic web - large scale structure of the distribution of galaxies in space - which was first observed in N-body simulations and later discovered in observations. The cuspy dark matter halo profiles, the overabundance of satellites, the Too-Big-Too-Fail problem are other examples of theoretical predictions that have a dramatic impact on recent developments in cosmology and galaxy formation. Large observational surveys such as e.g. SDSS, Euclid, and LSST are intimately connected with extensive cosmological simulations that provide statistical errors and tests for systematics. Accurate predictions for baryonic acoustic oscillations and redshift space distortions from high-resolution and large-volume cosmological simulations are required for interpretation of these large-scale galaxy/qso…
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Taxonomy
TopicsScientific Research and Discoveries · Galaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research
