ID: cond-mat/0608402

Random Sequential Addition of Hard Spheres in High Euclidean Dimensions

August 17, 2006

View on ArXiv

Similar papers 2

Controlling the Short-Range Order and Packing Densities of Many-Particle Systems

July 2, 2002

85% Match
S. Torquato, F. H. Stillinger
Statistical Mechanics

Questions surrounding the spatial disposition of particles in various condensed-matter systems continue to pose many theoretical challenges. This paper explores the geometric availability of amorphous many-particle configurations that conform to a given pair correlation function g(r). Such a study is required to observe the basic constraints of non-negativity for g(r) as well as for its structure factor S(k). The hard sphere case receives special attention, to help identify w...

Find SimilarView on arXiv

Estimates of the optimal density and kissing number of sphere packings in high dimensions

May 10, 2007

85% Match
A. Scardicchio, F. H. Stillinger, S. Torquato
Statistical Mechanics

The problem of finding the asymptotic behavior of the maximal density of sphere packings in high Euclidean dimensions is one of the most fascinating and challenging problems in discrete geometry. One century ago, Minkowski obtained a rigorous lower bound that is controlled asymptotically by $1/2^d$, where $d$ is the Euclidean space dimension. An indication of the difficulty of the problem can be garnered from the fact that exponential improvement of Minkowski's bound has prov...

Find SimilarView on arXiv

Unexpected Density Fluctuations in Jammed Disordered Sphere Packings

June 16, 2005

85% Match
A. Donev, F. H. Stillinger, S. Torquato
Statistical Mechanics

We computationally study jammed disordered hard-sphere packings as large as a million particles. We show that the packings are saturated and hyperuniform, i.e., that local density fluctuations grow only as a logarithmically-augmented surface area rather than the volume of the window. The structure factor shows an unusual non-analytic linear dependence near the origin, $S(k)\sim|k|$. In addition to exponentially damped oscillations seen in liquids, this implies a weak power-la...

Find SimilarView on arXiv

Solution of the dynamics of liquids in the large-dimensional limit

July 13, 2015

85% Match
Thibaud Maimbourg, Jorge Kurchan, Francesco Zamponi
Statistical Mechanics
Disordered Systems and Neura...
Soft Condensed Matter

We obtain analytic expressions for the time correlation functions of a liquid of spherical particles, exact in the limit of high dimensions $d$. The derivation is long but straightforward: a dynamic virial expansion for which only the first two terms survive, followed by a change to generalized spherical coordinates in the dynamic variables leading to saddle-point evaluation of integrals for large $d$. The problem is thus mapped onto a one-dimensional diffusion in a perturbed...

Find SimilarView on arXiv

Glass transition of hard spheres in high dimensions

March 24, 2010

85% Match
Bernhard Schmid, Rolf Schilling
Soft Condensed Matter
Statistical Mechanics

We have investigated analytically and numerically the liquid-glass transition of hard spheres for dimensions $d\to \infty $ in the framework of mode-coupling theory. The numerical results for the critical collective and self nonergodicity parameters $f_{c}(k;d) $ and $f_{c}^{(s)}(k;d) $ exhibit non-Gaussian $k$ -dependence even up to $d=800$. $f_{c}^{(s)}(k;d) $ and $f_{c}(k;d) $ differ for $k\sim d^{1/2}$, but become identical on a scale $k\sim d$, which is proven analytical...

Find SimilarView on arXiv

Generating dense packings of hard spheres by soft interaction design

February 14, 2018

85% Match
Thibaud Maimbourg, Mauro Sellitto, ... , Zamponi Francesco
Disordered Systems and Neura...
Soft Condensed Matter
Statistical Mechanics

Packing spheres efficiently in large dimension $d$ is a particularly difficult optimization problem. In this paper we add an isotropic interaction potential to the pure hard-core repulsion, and show that one can tune it in order to maximize a lower bound on packing density. Our results suggest that exponentially many (in the number of particles) distinct disordered sphere packings can be effectively constructed by this method, up to a packing fraction close to $7\, d\, 2^{-d}...

Find SimilarView on arXiv

Exact theory of dense amorphous hard spheres in high dimension. I. The free energy

August 2, 2012

85% Match
Jorge Kurchan, Giorgio Parisi, Francesco Zamponi
Statistical Mechanics
Disordered Systems and Neura...

We consider the theory of the glass transition and jamming of hard spheres in the large space dimension limit. Previous investigations were based on the assumption that the probability distribution within a "cage" is Gaussian, which is not fully consistent with numerical results. Here we perform a replica calculation without making any assumption on the cage shape. We show that thermodynamic functions turn out to be exact within the Gaussian ansatz -- provided one allows for ...

Find SimilarView on arXiv

Apparent Fractality Emerging from Models of Random Distributions

April 19, 1996

85% Match
Daniel A. Hebrew University of Jerusalem, Israel Hamburger, Ofer Hebrew University of Jerusalem, Israel Biham, David Hebrew University of Jerusalem, Israel Avnir
Adaptation and Self-Organizi...

The fractal properties of models of randomly placed $n$-dimensional spheres ($n$=1,2,3) are studied using standard techniques for calculating fractal dimensions in empirical data (the box counting and Minkowski-sausage techniques). Using analytical and numerical calculations it is shown that in the regime of low volume fraction occupied by the spheres, apparent fractal behavior is observed for a range of scales between physically relevant cut-offs. The width of this range, ty...

Find SimilarView on arXiv

Fluctuations, structure factor and polytetrahedra in random packings of sticky hard spheres

September 8, 2014

85% Match
Marc Bletry, Jean Bletry
Soft Condensed Matter

Sequentially-built random sphere-packings have been numerically studied in the packing fraction interval $0.329 < \gamma < 0.586$. For that purpose fast running geometrical algorithms have been designed in order to build about 300 aggregates, containing $10^6$ spheres each one, which allowed a careful study of the local fluctuations and an improved accuracy in the calculations of the pair distribution $P(r)$ and structure factors $S(Q)$ of the aggregates. Among various para...

Find SimilarView on arXiv

The dimensional evolution of structure and dynamics in hard sphere liquids

November 26, 2021

85% Match
Patrick Charbonneau, Yi Hu, ... , Morse Peter K.
Statistical Mechanics
Soft Condensed Matter

The formulation of the mean-field, infinite-dimensional solution of hard sphere glasses is a significant milestone for theoretical physics. How relevant this description might be for understanding low-dimensional glass-forming liquids, however, remains unclear. These liquids indeed exhibit a complex interplay between structure and dynamics, and the importance of this interplay might only slowly diminish as dimension $d$ increases. A careful numerical assessment of the matter ...

Find SimilarView on arXiv