International audienceWe consider a one-dimensional classical Wigner jellium, not necessarily charge neutral, for which the electrons are allowed to exist beyond the support of the background charge. The model can be seen as a one-dimensional Coulomb gas in which the external field is generated by a smeared background on an interval. It is a true one-dimensional Coulomb gas and not a one-dimensional log-gas. We first observe that the system exists if and only if the total background charge is greater than the number of electrons minus one. Moreover we obtain a R\'enyi-type probabilistic representation for the order statistics of the particle system beyond the support of the background. Furthermore, for various backgrounds, we show convergen...
Setting: quantum statistical mechanics. Charged fermions move on a line, homogeneous neutralizing ba...
In this thesis, we investigate the equilibrium and dynamical properties of charged particles in one ...
17 pages, 4 figures,We use random matrix models to investigate the ground state energy of electrons ...
International audienceWe consider a one-dimensional classical Wigner jellium, not necessarily charge...
International audienceWe consider a planar Coulomb gas in which the external potential is generated ...
We modify the "floating crystal" trial state for the classical homogeneous electron gas (also known ...
We present a complete theory for the full particle statistics of the positions of bulk and extremal ...
International audienceWe consider a one-dimensional classical Coulomb gas of N-like charges in a har...
Wigner's jellium is a model for a gas of electrons. The model consists of $N$ unit negatively charge...
A jellium model of interacting electrons has been investigated using scaling arguments on the kineti...
We consider the system of particles on a finite interval with pairwise nearest neighbours interactio...
The present paper is devoted to the study of a simple model of interacting electrons in a random bac...
Structure has slightly changed, details and corrections have been added to some of the proofs.We con...
The jellium is a model, introduced by Wigner (Phys Rev 46(11):1002, 1934), for a gas of electrons mo...
The ground-state properties of a single-component one-dimensional Coulomb gas are investigated. We u...
Setting: quantum statistical mechanics. Charged fermions move on a line, homogeneous neutralizing ba...
In this thesis, we investigate the equilibrium and dynamical properties of charged particles in one ...
17 pages, 4 figures,We use random matrix models to investigate the ground state energy of electrons ...
International audienceWe consider a one-dimensional classical Wigner jellium, not necessarily charge...
International audienceWe consider a planar Coulomb gas in which the external potential is generated ...
We modify the "floating crystal" trial state for the classical homogeneous electron gas (also known ...
We present a complete theory for the full particle statistics of the positions of bulk and extremal ...
International audienceWe consider a one-dimensional classical Coulomb gas of N-like charges in a har...
Wigner's jellium is a model for a gas of electrons. The model consists of $N$ unit negatively charge...
A jellium model of interacting electrons has been investigated using scaling arguments on the kineti...
We consider the system of particles on a finite interval with pairwise nearest neighbours interactio...
The present paper is devoted to the study of a simple model of interacting electrons in a random bac...
Structure has slightly changed, details and corrections have been added to some of the proofs.We con...
The jellium is a model, introduced by Wigner (Phys Rev 46(11):1002, 1934), for a gas of electrons mo...
The ground-state properties of a single-component one-dimensional Coulomb gas are investigated. We u...
Setting: quantum statistical mechanics. Charged fermions move on a line, homogeneous neutralizing ba...
In this thesis, we investigate the equilibrium and dynamical properties of charged particles in one ...
17 pages, 4 figures,We use random matrix models to investigate the ground state energy of electrons ...