International audienceThe crystallization of electrons in quasi low-dimensional solids is studied in a model which retains the full three-dimensional nature of the Coulomb interactions. We show that restricting the electron motion to layers (or chains) gives rise to a rich sequence of structural transitions upon varying the particle density. In addition, the concurrence of low-dimensional electron motion and isotropic Coulomb interactions leads to a sizeable stabilization of the Wigner crystal, which could be one of the mechanisms at the origin of the charge ordered phases frequently observed in such compounds
We show that the density for Wigner crystallization to occur for the two-dimensional electron liquid...
The phase diagram of quantum electron bilayers in zero magnetic field is obtained using density func...
Setting: quantum statistical mechanics. Charged fermions move on a line, homogeneous neutralizing ba...
International audienceThe crystallization of electrons in quasi low-dimensional solids is studied in...
We study a model that describes Wigner crystallization of electrons in low-dimensional solids. Restr...
To appear in the proceedings of the XXXVIth Rencontres de Moriond edited by T. Martin and G. Montamb...
The phase diagram of a system of electrons hopping on a square lattice and interacting through long-...
11 pages, 7 figuresInternational audienceWe study a system of electrons interacting through long--ra...
The simplest possible structural transition that an electronic system can undergo is Wigner crystall...
The structural and melting properties of a quasi-one dimensional system of charged particles, intera...
We studied the structural, dynamical properties and melting of a quasi-one-dimensional system of cha...
We study the ground state ordering and interactions between two two-dimensional Wigner crystals on n...
In this review, after a brief discussion of Wigner’s ideas about the localization of electrons due t...
A jellium model of interacting electrons has been investigated using scaling arguments on the kineti...
We study the Wigner crystallization in semiconductor quantum wires within the density functional app...
We show that the density for Wigner crystallization to occur for the two-dimensional electron liquid...
The phase diagram of quantum electron bilayers in zero magnetic field is obtained using density func...
Setting: quantum statistical mechanics. Charged fermions move on a line, homogeneous neutralizing ba...
International audienceThe crystallization of electrons in quasi low-dimensional solids is studied in...
We study a model that describes Wigner crystallization of electrons in low-dimensional solids. Restr...
To appear in the proceedings of the XXXVIth Rencontres de Moriond edited by T. Martin and G. Montamb...
The phase diagram of a system of electrons hopping on a square lattice and interacting through long-...
11 pages, 7 figuresInternational audienceWe study a system of electrons interacting through long--ra...
The simplest possible structural transition that an electronic system can undergo is Wigner crystall...
The structural and melting properties of a quasi-one dimensional system of charged particles, intera...
We studied the structural, dynamical properties and melting of a quasi-one-dimensional system of cha...
We study the ground state ordering and interactions between two two-dimensional Wigner crystals on n...
In this review, after a brief discussion of Wigner’s ideas about the localization of electrons due t...
A jellium model of interacting electrons has been investigated using scaling arguments on the kineti...
We study the Wigner crystallization in semiconductor quantum wires within the density functional app...
We show that the density for Wigner crystallization to occur for the two-dimensional electron liquid...
The phase diagram of quantum electron bilayers in zero magnetic field is obtained using density func...
Setting: quantum statistical mechanics. Charged fermions move on a line, homogeneous neutralizing ba...