Using an ensemble of high resolution 2D numerical simulations, we explore the scaling properties of cosmological density fluctuations in the non-linear regime. We study the scaling behaviour of the usual $N$--point volume-averaged correlations, and also examine the scaling of the entire probability density function (pdf) of the fluctuations. We focus on two important issues: (i) whether the scaling behaviour of 2D clustering is consistent with what one infer from radial collapse arguments; and (ii) whether there is any evidence from these high-resolution simulations that a regime of stable clustering is ever entered. We find that the answers are (i) yes and (ii) no. We further find that the behaviour of the highly non-linear regime in these...
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Padmanabhan has suggested a model to relate the non-linear two-point correlation function to the lin...
The gravitational clustering of collisionless particles in an expanding universe is modelled using s...
It is known that radial collapse around density peaks can explain the key features of the evolution ...
We consider the problem of gravitational clustering in a D-dimensional expanding Universe and derive...
We investigate non-linear scaling relations for two-dimensional (2D) gravitational collapse in an ex...
The gravitational clustering of collisionless particles in an expanding universe is modelled using s...
We present an analysis of some of the properties of the density field realized in numerical simulati...
International audienceThe determination of the resolution of cosmological N-body simulations, i.e. t...
We investigate stability of the scale-invariant solutions of the BBGKY equations for two-point spati...
Hamilton et al. recently proposed the idea that the growth of density perturbations in an expanding ...
The growth of density perturbations in an expanding universe in the non-linear regime is investigate...
We use the BBGKY hierarchy equations to calculate, perturbatively, the lowest order nonlinear correc...
We use the BBGKY hierarchy equations to calculate, perturbatively, the lowest order nonlinear correc...
We present new perturbation theory (PT) predictions in the Spherical Collapse (SC) model for the 2-p...
Sorry, the full text of this article is not available here. Please click on the alternative location...
Padmanabhan has suggested a model to relate the non-linear two-point correlation function to the lin...
The gravitational clustering of collisionless particles in an expanding universe is modelled using s...
It is known that radial collapse around density peaks can explain the key features of the evolution ...
We consider the problem of gravitational clustering in a D-dimensional expanding Universe and derive...
We investigate non-linear scaling relations for two-dimensional (2D) gravitational collapse in an ex...
The gravitational clustering of collisionless particles in an expanding universe is modelled using s...
We present an analysis of some of the properties of the density field realized in numerical simulati...
International audienceThe determination of the resolution of cosmological N-body simulations, i.e. t...
We investigate stability of the scale-invariant solutions of the BBGKY equations for two-point spati...
Hamilton et al. recently proposed the idea that the growth of density perturbations in an expanding ...
The growth of density perturbations in an expanding universe in the non-linear regime is investigate...
We use the BBGKY hierarchy equations to calculate, perturbatively, the lowest order nonlinear correc...
We use the BBGKY hierarchy equations to calculate, perturbatively, the lowest order nonlinear correc...
We present new perturbation theory (PT) predictions in the Spherical Collapse (SC) model for the 2-p...
Sorry, the full text of this article is not available here. Please click on the alternative location...
Padmanabhan has suggested a model to relate the non-linear two-point correlation function to the lin...
The gravitational clustering of collisionless particles in an expanding universe is modelled using s...