International audience: The thermal conductivity of a model for solid argon is investigated using nonequilibrium molecular dynamics methods, as well as the traditional Boltzmann transport equation approach with input from molecular dynamics calculations, both with classical and quantum thermostats. A surprising result is that, at low temperatures, only the classical molecular dynamics technique is in agreement with the experimental data. We argue that this agreement is due to a compensation of errors and raise the issue of an appropriate method for calculating thermal conductivities at low (below Debye) temperatures
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
Following the Green-Kubo formalism in linear response theory, the lattice thermal conductivity of so...
The evaluation of transport coefficients in extended systems, such as thermal conductivity or shear ...
We present calculations of the thermal conductivity of fcc Argon at high pressures (pressure range i...
Equilibrium molecular dynamics is performed to obtain the thermal conductivity of crystalline argon ...
Equilibrium molecular dynamics is performed to obtain the thermal conductivity of crystalline argon ...
Quantum simulation methods based on electronic-structure theory are deemed unfit to cope with atomic...
Quantum simulation methods based on electronic-structure theory are deemed unfit to cope with atomic...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
10.1016/j.physleta.2010.03.067Physics Letters, Section A: General, Atomic and Solid State Physics374...
In the era where structures and devices are of the order of a few nanometers, a detailed understandi...
Advances in understanding heat transport in solids were recently reported by both experiment and the...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
Following the Green-Kubo formalism in linear response theory, the lattice thermal conductivity of so...
The evaluation of transport coefficients in extended systems, such as thermal conductivity or shear ...
We present calculations of the thermal conductivity of fcc Argon at high pressures (pressure range i...
Equilibrium molecular dynamics is performed to obtain the thermal conductivity of crystalline argon ...
Equilibrium molecular dynamics is performed to obtain the thermal conductivity of crystalline argon ...
Quantum simulation methods based on electronic-structure theory are deemed unfit to cope with atomic...
Quantum simulation methods based on electronic-structure theory are deemed unfit to cope with atomic...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
10.1016/j.physleta.2010.03.067Physics Letters, Section A: General, Atomic and Solid State Physics374...
In the era where structures and devices are of the order of a few nanometers, a detailed understandi...
Advances in understanding heat transport in solids were recently reported by both experiment and the...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...