The revised Enskog kinetic theory (RET) is used to describe transport in a hard sphere crystal. The connection between the RET and the exact density functional theory (DFT) description of the solid state is established. The RET is used to derive the dissipative linear equations of elasticity. The elastic moduli in these equations are identical to those obtained from equilibrium like DFT. The expressions for the solid state transport coefficients (determining sound absorption and heat conduction in the hard sphere crystal) are new. As for the analogous calculation in the liquid state, the transport coefficients are determined by the (solid state) equilibrium two-particle distribution function at contact
Using Newtonian and Brownian dynamics simulations, the structural and transport properties of hard a...
We calculate numerically the normal modes of vibrations in three-dimensional jammed packings of soft...
Thermal conductivity in dielectric crystals is the result of the relaxation of lattice vibrations de...
The revised Enskog theory for a classical system of hard spheres provides a unified description of b...
Starting from a general classical model of many interacting particles we present a well defined step...
This thesis examines the dynamics and physical properties of the rough hard sphere fluid (RHSF). The...
The Navier–Stokes transport coefficients for a model of a confined quasi-two-dimensional granular g...
A kinetic model is proposed for the nonequilibrium flow of dense gases composed of hard sphere molec...
Contains fulltext : mmubn000001_145181693.pdf (publisher's version ) (Open Access)...
New calculations have been made of the self-diffusion coefficient D, the shear viscosity eta(s), the...
A study of the transport coefficients of a system of elastic hard disks based on the use of Helfand-...
A study of the transport coefficients of a system of elastic hard disks, based on the use of Helfand...
International audienceThe aim of this Chapter is not to produce a complete course on electrons and p...
We introduce a novel approach to model heat transport in solids, based on the Green-Kubo theory of l...
The local equilibrium approach previously developed by the authors (J Mabillard and P Gaspard 2020 J...
Using Newtonian and Brownian dynamics simulations, the structural and transport properties of hard a...
We calculate numerically the normal modes of vibrations in three-dimensional jammed packings of soft...
Thermal conductivity in dielectric crystals is the result of the relaxation of lattice vibrations de...
The revised Enskog theory for a classical system of hard spheres provides a unified description of b...
Starting from a general classical model of many interacting particles we present a well defined step...
This thesis examines the dynamics and physical properties of the rough hard sphere fluid (RHSF). The...
The Navier–Stokes transport coefficients for a model of a confined quasi-two-dimensional granular g...
A kinetic model is proposed for the nonequilibrium flow of dense gases composed of hard sphere molec...
Contains fulltext : mmubn000001_145181693.pdf (publisher's version ) (Open Access)...
New calculations have been made of the self-diffusion coefficient D, the shear viscosity eta(s), the...
A study of the transport coefficients of a system of elastic hard disks based on the use of Helfand-...
A study of the transport coefficients of a system of elastic hard disks, based on the use of Helfand...
International audienceThe aim of this Chapter is not to produce a complete course on electrons and p...
We introduce a novel approach to model heat transport in solids, based on the Green-Kubo theory of l...
The local equilibrium approach previously developed by the authors (J Mabillard and P Gaspard 2020 J...
Using Newtonian and Brownian dynamics simulations, the structural and transport properties of hard a...
We calculate numerically the normal modes of vibrations in three-dimensional jammed packings of soft...
Thermal conductivity in dielectric crystals is the result of the relaxation of lattice vibrations de...