The structural and melting properties of a quasi-one dimensional system of charged particles, interacting through a screened Coulomb potential are investigated. Depending on the density and the screening length, the system crystallizes in different lattice structures. The structural phase transitions between them are of first or second order. The melting of the system is studied through Monte Carlo simulations and reentrant behavior as a function of density is observed as well as evidence of anisotropic melting. (C) 2003 Published by Elsevier Ltd.</p
We report here a Monte Carlo study of the thermodynamic and structural properties of a two-dimension...
By use of constant energy molecular dynamics simulations, we have investigated the melting and freez...
We study the properties of a lattice of large polarons at low density, which crystallize due to the ...
The structural and melting properties of a quasi-one dimensional system of charged particles, intera...
The properties of a quasi-one-dimensional (Q1D) classical Wigner crystal are studied. The charged pa...
We studied the structural, dynamical properties and melting of a quasi-one-dimensional system of cha...
We investigate the stability, dynamical properties, and melting of a two-dimensional ~2D! Wigner cry...
We report an extensive Monte Carlo study of the melting of the classical two-dimensional Wigner crys...
© 2019, Pleiades Publishing, Inc. A computer modelling of a quasi-one dimensional (q1D) Coulomb crys...
We investigate the zero-temperature phase diagram and melting transition of a two-dimensional Wigner...
International audienceThe crystallization of electrons in quasi low-dimensional solids is studied in...
The melting transition of the five different lattices of a bilayer crystal is studied using the Mont...
We study a model that describes Wigner crystallization of electrons in low-dimensional solids. Restr...
© 2016 American Physical Society.We investigate the influence of confinement on the positional order...
The “melting” of self-formed rigid structures made of a small number of interacting classi...
We report here a Monte Carlo study of the thermodynamic and structural properties of a two-dimension...
By use of constant energy molecular dynamics simulations, we have investigated the melting and freez...
We study the properties of a lattice of large polarons at low density, which crystallize due to the ...
The structural and melting properties of a quasi-one dimensional system of charged particles, intera...
The properties of a quasi-one-dimensional (Q1D) classical Wigner crystal are studied. The charged pa...
We studied the structural, dynamical properties and melting of a quasi-one-dimensional system of cha...
We investigate the stability, dynamical properties, and melting of a two-dimensional ~2D! Wigner cry...
We report an extensive Monte Carlo study of the melting of the classical two-dimensional Wigner crys...
© 2019, Pleiades Publishing, Inc. A computer modelling of a quasi-one dimensional (q1D) Coulomb crys...
We investigate the zero-temperature phase diagram and melting transition of a two-dimensional Wigner...
International audienceThe crystallization of electrons in quasi low-dimensional solids is studied in...
The melting transition of the five different lattices of a bilayer crystal is studied using the Mont...
We study a model that describes Wigner crystallization of electrons in low-dimensional solids. Restr...
© 2016 American Physical Society.We investigate the influence of confinement on the positional order...
The “melting” of self-formed rigid structures made of a small number of interacting classi...
We report here a Monte Carlo study of the thermodynamic and structural properties of a two-dimension...
By use of constant energy molecular dynamics simulations, we have investigated the melting and freez...
We study the properties of a lattice of large polarons at low density, which crystallize due to the ...