International audienceThe determination of the resolution of cosmological N-body simulations, i.e. the range of scales in which quantities measured in them represent accurately the continuum limit, is an important open question. We address it here using scale-free models, for which self-similarity provides a powerful tool to control resolution. Such models also provide a robust testing ground for the so-called stable clustering approximation, which gives simple predictions for them. Studying large N-body simulations of such models with different force smoothing, we find that these two issues are in fact very closely related: our conclusion is that the accuracy of two-point statistics in the non-linear regime starts to degrade strongly aroun...
The gravitationally-driven evolution of cold dark matter dominates the formation of structure in the...
12 pages, 3 figures, some revisions to match the published version and corrected some typos.We analy...
We use N-body simulations to study the shape of mean cluster density and velocity profiles in the no...
30 pages, 13 figuresWe study non-linear gravitational clustering from cold gaussian power-law initia...
International audienceWe exploit a suite of large N-body simulations (up to N = 4096^3) performed wi...
The formation of structures in the universe is one of the major questions in cosmology, and numerica...
Fundamental physical considerations and past tests suggest that there may be a problem with discrete...
N -body simulations are currently the only available technique to solve clustering at non-linear sca...
We present the results of a large library of cosmological N-body simulations, using power-law initia...
Using an ensemble of high resolution 2D numerical simulations, we explore the scaling properties of ...
8 pages, 4 figures (one in color)Studies of a class of infinite one dimensional self-gravitating sys...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
It is known that radial collapse around density peaks can explain the key features of the evolution ...
The nonlinear clustering of dark matter particles in an expanding universe is usually studied by N-b...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
The gravitationally-driven evolution of cold dark matter dominates the formation of structure in the...
12 pages, 3 figures, some revisions to match the published version and corrected some typos.We analy...
We use N-body simulations to study the shape of mean cluster density and velocity profiles in the no...
30 pages, 13 figuresWe study non-linear gravitational clustering from cold gaussian power-law initia...
International audienceWe exploit a suite of large N-body simulations (up to N = 4096^3) performed wi...
The formation of structures in the universe is one of the major questions in cosmology, and numerica...
Fundamental physical considerations and past tests suggest that there may be a problem with discrete...
N -body simulations are currently the only available technique to solve clustering at non-linear sca...
We present the results of a large library of cosmological N-body simulations, using power-law initia...
Using an ensemble of high resolution 2D numerical simulations, we explore the scaling properties of ...
8 pages, 4 figures (one in color)Studies of a class of infinite one dimensional self-gravitating sys...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
It is known that radial collapse around density peaks can explain the key features of the evolution ...
The nonlinear clustering of dark matter particles in an expanding universe is usually studied by N-b...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
The gravitationally-driven evolution of cold dark matter dominates the formation of structure in the...
12 pages, 3 figures, some revisions to match the published version and corrected some typos.We analy...
We use N-body simulations to study the shape of mean cluster density and velocity profiles in the no...