Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at various length scales in many materials. In this method, two local thermostats at different temperatures are used to generate a nonequilibrium steady state with a constant heat flux. Conventionally, the thermal conductivity of a finite system is calculated as the ratio between the heat flux and the temperature gradient extracted from the linear part of the temperature profile away from the local thermostats. Here, we show that, with a proper choice of the thermostat, the nonlinear part of the temperature profile should actually not be excluded in thermal transport calculations. We compare NEMD results against those from the atomistic Green’s fun...
Molecular dynamics simulations and methods of importance sampling are used to study the heat transpo...
Direct method is commonly used to compute the thermal conductivity of a nanoscale material after mol...
Non-equilibrium molecular dynamics simulations have expanded our ability to investigate interfacial ...
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...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
We propose a way to properly interpret the apparent thermal conductivity obtained for finite systems...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
Journal ArticleWe have applied a new nonequilibrium molecular dynamics (NEMD) method [F. Müller-Plat...
Molecular dynamics simulations and methods of importance sampling are used to study the heat transpo...
Direct method is commonly used to compute the thermal conductivity of a nanoscale material after mol...
Non-equilibrium molecular dynamics simulations have expanded our ability to investigate interfacial ...
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...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
We propose a way to properly interpret the apparent thermal conductivity obtained for finite systems...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
Journal ArticleWe have applied a new nonequilibrium molecular dynamics (NEMD) method [F. Müller-Plat...
Molecular dynamics simulations and methods of importance sampling are used to study the heat transpo...
Direct method is commonly used to compute the thermal conductivity of a nanoscale material after mol...
Non-equilibrium molecular dynamics simulations have expanded our ability to investigate interfacial ...