We use molecular dynamics simulations and the lattice-based scattering boundary method to compute the thermal conductance of finite-length Lennard-Jones superlattice junctions confined by bulk crystalline leads. The superlattice junction thermal conductance depends on the properties of the leads. For junctions with a superlattice period of four atomic monolayers at temperatures between 5 and 20 K, those with mass-mismatched leads have a greater thermal conductance than those with mass-matched leads. We attribute this lead effect to interference between and the ballistic transport of emergent junction vibrational modes. The lead effect diminishes when the temperature is increased, when the superlattice period is increased, and when interfaci...
We present measurements of the thermal conductance of self-assembled monolayer (SAM) junctions forme...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
The minimum thermal conductance versus supercell size (d(s)) is revealed in graphene and boron nitri...
<p>We use molecular dynamics simulations and the lattice-based scattering boundary method to compute...
<p>Thermal transport across three-dimensional Lennard-Jones superlattices, two-dimensional heterostr...
International audienceWe provide a derivation allowing the calculation of thermal conductance at int...
The dependence of superlattice thermal conductivity on period length is investigated by molecular dy...
International audienceThe value measured in the amorphous structure with the same chemical compositi...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
ABSTRACT: We present measurements of the thermal conductance of self-assembled monolayer (SAM) junct...
We report on molecular dynamics studies of heat flow in superlattices. The computer simulations are ...
<p>Molecular dynamics simulations and lattice dynamics calculations are used to study the vibrationa...
The impact of mass and bond energy difference and interface defects on thermal boundary conductance ...
Molecular dynamics simulations are used to predict the ther-mal resistance of solid-solid interfaces...
Twin interfaces are easily formed in superlattices due to their lower interfacial energy. However, t...
We present measurements of the thermal conductance of self-assembled monolayer (SAM) junctions forme...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
The minimum thermal conductance versus supercell size (d(s)) is revealed in graphene and boron nitri...
<p>We use molecular dynamics simulations and the lattice-based scattering boundary method to compute...
<p>Thermal transport across three-dimensional Lennard-Jones superlattices, two-dimensional heterostr...
International audienceWe provide a derivation allowing the calculation of thermal conductance at int...
The dependence of superlattice thermal conductivity on period length is investigated by molecular dy...
International audienceThe value measured in the amorphous structure with the same chemical compositi...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
ABSTRACT: We present measurements of the thermal conductance of self-assembled monolayer (SAM) junct...
We report on molecular dynamics studies of heat flow in superlattices. The computer simulations are ...
<p>Molecular dynamics simulations and lattice dynamics calculations are used to study the vibrationa...
The impact of mass and bond energy difference and interface defects on thermal boundary conductance ...
Molecular dynamics simulations are used to predict the ther-mal resistance of solid-solid interfaces...
Twin interfaces are easily formed in superlattices due to their lower interfacial energy. However, t...
We present measurements of the thermal conductance of self-assembled monolayer (SAM) junctions forme...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
The minimum thermal conductance versus supercell size (d(s)) is revealed in graphene and boron nitri...