Abstract. The one dimensional symmetric simple exclusion process (SSEP) is one of the very few exactly soluble models of non-equilibrium statistical physics. It describes a system of particles which diffuse with hard core repulsion on a one dimensional lattice in contact with two reservoirs of particles at unequal densities. The goal of this note is to review the two main approaches which lead to the exact expression of the large deviation functional of the density of the SSEP in its steady state: a microscopic approach (based on the matrix product ansatz and an additivity property) and a macroscopic approach (based on the macroscopic fluctuation theory of Bertini, D
Statistical Mechanics (SM) is a branch of theoretical physics which inquires the properties of syste...
International audienceThe microscopic structure of macroscopic shocks in the one-dimensional, totall...
Using the macroscopic fluctuation theory of Bertini, De Sole, Gabrielli, Jona-Lasinio, and Landim, o...
http://arxiv.org/abs/1012.1136The one dimensional symmetric simple exclusion process (SSEP) is one o...
Proceedings of the 13th International Summer School on Fundamental Problems in Statistical Physics (...
The large deviation properties of equilibrium (reversible) lattice gases are mathematically reasonab...
International audienceWe introduce a multi-species generalization of the symmetric simple exclusionp...
http://arxiv.org/abs/cond-mat/0703762International audienceThese lecture notes give a short review o...
The large deviation properties of equilibrium (reversible) lattice gases are mathematically reasonab...
Over the last few decades the interests of statistical physicists have broadened to include the deta...
10 pages, 3 figuresInternational audienceThe one-dimensional symmetric exclusion process, the simple...
We obtain the large deviation functional of a density profile for the asymmetric exclusion process o...
Over the last few decades the interests of statistical physicists have broadened to include the deta...
We formulate a dynamical fluctuation theory for stationary non-equilibrium states (SNS) which is tes...
We present the first exact solution for the time dependent equations of the macroscopic fluctuation ...
Statistical Mechanics (SM) is a branch of theoretical physics which inquires the properties of syste...
International audienceThe microscopic structure of macroscopic shocks in the one-dimensional, totall...
Using the macroscopic fluctuation theory of Bertini, De Sole, Gabrielli, Jona-Lasinio, and Landim, o...
http://arxiv.org/abs/1012.1136The one dimensional symmetric simple exclusion process (SSEP) is one o...
Proceedings of the 13th International Summer School on Fundamental Problems in Statistical Physics (...
The large deviation properties of equilibrium (reversible) lattice gases are mathematically reasonab...
International audienceWe introduce a multi-species generalization of the symmetric simple exclusionp...
http://arxiv.org/abs/cond-mat/0703762International audienceThese lecture notes give a short review o...
The large deviation properties of equilibrium (reversible) lattice gases are mathematically reasonab...
Over the last few decades the interests of statistical physicists have broadened to include the deta...
10 pages, 3 figuresInternational audienceThe one-dimensional symmetric exclusion process, the simple...
We obtain the large deviation functional of a density profile for the asymmetric exclusion process o...
Over the last few decades the interests of statistical physicists have broadened to include the deta...
We formulate a dynamical fluctuation theory for stationary non-equilibrium states (SNS) which is tes...
We present the first exact solution for the time dependent equations of the macroscopic fluctuation ...
Statistical Mechanics (SM) is a branch of theoretical physics which inquires the properties of syste...
International audienceThe microscopic structure of macroscopic shocks in the one-dimensional, totall...
Using the macroscopic fluctuation theory of Bertini, De Sole, Gabrielli, Jona-Lasinio, and Landim, o...