International audienceThe length dependence of thermal conductivity over more than two orders of magnitude has been systematically studied for a range of materials, interatomic potentials, and temperatures using the atomistic approach-to-equilibrium molecular dynamics (AEMD) method. By comparing the values of conductivity obtained for a given supercell length and maximum phonon mean free path (MFP), we find that such values are strongly correlated, demonstrating that the AEMD calculation with a supercell of finite length actually probes the thermal conductivity corresponding to a maximum phonon MFP. As a consequence, the less pronounced length dependence usually observed for poorer thermal conductors, such as amorphous silica, is physically...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Direct method is commonly used to compute the thermal conductivity of a nanoscale material after mol...
We present a molecular dynamics method addressed to the calculation of the lattice thermal conductiv...
International audienceThe length dependence of thermal conductivity over more than two orders of mag...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Funding Information: Y.S., Y.H., and H.B. acknowledge the support by the National Natural Science Fo...
Funding Information: Y.S., Y.H., and H.B. acknowledge the support by the National Natural Science Fo...
Equilibrium molecular dynamics (EMD) simulations through Green-Kubo formula (GKF) have been widely u...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
The dependence of superlattice thermal conductivity on period length is investigated by molecular dy...
We propose a way to properly interpret the apparent thermal conductivity obtained for finite systems...
The dependence of superlattice thermal conductivity on period length is investigated by molecular dy...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Direct method is commonly used to compute the thermal conductivity of a nanoscale material after mol...
We present a molecular dynamics method addressed to the calculation of the lattice thermal conductiv...
International audienceThe length dependence of thermal conductivity over more than two orders of mag...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Funding Information: Y.S., Y.H., and H.B. acknowledge the support by the National Natural Science Fo...
Funding Information: Y.S., Y.H., and H.B. acknowledge the support by the National Natural Science Fo...
Equilibrium molecular dynamics (EMD) simulations through Green-Kubo formula (GKF) have been widely u...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
The dependence of superlattice thermal conductivity on period length is investigated by molecular dy...
We propose a way to properly interpret the apparent thermal conductivity obtained for finite systems...
The dependence of superlattice thermal conductivity on period length is investigated by molecular dy...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Direct method is commonly used to compute the thermal conductivity of a nanoscale material after mol...
We present a molecular dynamics method addressed to the calculation of the lattice thermal conductiv...