We present a study of the field-dependent dispersion coefficient of point-like particles in various 2D overdamped systems with obstructions (periodic, percolating, and trapping distributions of obstacles). These calculations profit from the synthesis of a newly proposed Monte Carlo algorithm --the first such algorithm that correctly reproduces the free dispersion coefficient in the presence of finite external fields-- and an asymptotically exact calculation technique. The resulting method efficiently produces algebraic and numerical results without the need to actually perform Monte Carlo simulations. When compared to such simulations, our exact method features a negligible computational cost and exponentially small errors. Utilizing the po...
This work presents a very detailed investigation of the diffusion behavior of lattice gases on disor...
Abstract\ud \ud Motion of cells in living tissues is hindered by obstacles, which may be stationary ...
Random walk models are often used to interpret experimental observations of the motion of biological...
We present a study of the field-dependent dispersion coefficient of point-like particles in various ...
Many biological, chemical and physical problems can be reduced to that of the diffusion of a particl...
We recently demonstrated that standard fixed-time lattice random-walk models cannot be modified to p...
The drift and diffusion motions of biased particles are commonly studied using random walks on latti...
Diffusion is a transport process of great interest as it pertains to many problems in biology, medic...
We investigate random walk of a particle constrained on cells, where cells behave as a lattice gas o...
A method for efficient numerical calculation of the frequency-dependent diffusion coefficient of ran...
The properties of a particle diffusing on a one-dimensional lattice where at each site a random barr...
14 pages, 11 figuresInternational audienceA diffusive lattice gas is characterized by the diffusion ...
In this paper we study the problem of the numerical calculation (by Monte Carlo methods) of the effe...
Large-scale, time-asymptotic dispersion properties of diffusing tracers dragged by a uniform drive t...
Diverse phenomena in physical, chemical, and biological systems exhibit significant stochasticity an...
This work presents a very detailed investigation of the diffusion behavior of lattice gases on disor...
Abstract\ud \ud Motion of cells in living tissues is hindered by obstacles, which may be stationary ...
Random walk models are often used to interpret experimental observations of the motion of biological...
We present a study of the field-dependent dispersion coefficient of point-like particles in various ...
Many biological, chemical and physical problems can be reduced to that of the diffusion of a particl...
We recently demonstrated that standard fixed-time lattice random-walk models cannot be modified to p...
The drift and diffusion motions of biased particles are commonly studied using random walks on latti...
Diffusion is a transport process of great interest as it pertains to many problems in biology, medic...
We investigate random walk of a particle constrained on cells, where cells behave as a lattice gas o...
A method for efficient numerical calculation of the frequency-dependent diffusion coefficient of ran...
The properties of a particle diffusing on a one-dimensional lattice where at each site a random barr...
14 pages, 11 figuresInternational audienceA diffusive lattice gas is characterized by the diffusion ...
In this paper we study the problem of the numerical calculation (by Monte Carlo methods) of the effe...
Large-scale, time-asymptotic dispersion properties of diffusing tracers dragged by a uniform drive t...
Diverse phenomena in physical, chemical, and biological systems exhibit significant stochasticity an...
This work presents a very detailed investigation of the diffusion behavior of lattice gases on disor...
Abstract\ud \ud Motion of cells in living tissues is hindered by obstacles, which may be stationary ...
Random walk models are often used to interpret experimental observations of the motion of biological...