We use nonequilibrium molecular dynamics simulation to elucidate the interfacial thermal conductance between single-crystal silicon and amorphous polyethylene. In particular, we investigate the role of solid stiffness and the bonding strength across the interface on the interfacial thermal conductance. Simulations of interfacial scattering of individual phonon wave packets indicate that neither diffuse mismatch model nor acoustic mismatch model describes the interfacial scattering process quantitatively. In general, transmission coefficients for longitudinal phonons are significantly higher than those for transverse phonons. We also observe that anharmonic processes can be important for interfacial conductance. © 2009 The American Physical ...
Interfaces impede heat flow in micro/nanostructured systems. Conventional theories for interfacial t...
In this study, we investigated the temperature dependence and size effect of the thermal boundary re...
The knowledge of inelastic phonon scattering is crucial for the understanding of thermal boundary co...
We use nonequilibrium molecular dynamics simulation to elucidate the interfacial thermal conductance...
We use nonequilibrium molecular dynamics simulation to elucidate the interfacial thermal conductance...
We analyze the results of molecular-dynamics simulations of the interfacial (Kapitza) resistance of ...
We analyze the results of molecular-dynamics simulations of the interfacial (Kapitza) resistance of ...
Non-equilibrium molecular dynamic simulation was employed to investigate the interfacial thermal con...
The thermal interface conductance between Al and Si was simulated by a non-equilibrium molecular dyn...
The objective of this thesis is to develop a fundamental understanding of the role of the interface ...
International audienceWe provide a derivation allowing the calculation of thermal conductance at int...
International audienceSince the experimental discovery of interface thermal resistance by Kapitza [1...
Many portions of energy generated in the U.S. are not used and take the form of wasted heat due to a...
The impact of mass and bond energy difference and interface defects on thermal boundary conductance ...
Phonons represent the quantization of lattice vibration, responsible for heat transfer in semiconduc...
Interfaces impede heat flow in micro/nanostructured systems. Conventional theories for interfacial t...
In this study, we investigated the temperature dependence and size effect of the thermal boundary re...
The knowledge of inelastic phonon scattering is crucial for the understanding of thermal boundary co...
We use nonequilibrium molecular dynamics simulation to elucidate the interfacial thermal conductance...
We use nonequilibrium molecular dynamics simulation to elucidate the interfacial thermal conductance...
We analyze the results of molecular-dynamics simulations of the interfacial (Kapitza) resistance of ...
We analyze the results of molecular-dynamics simulations of the interfacial (Kapitza) resistance of ...
Non-equilibrium molecular dynamic simulation was employed to investigate the interfacial thermal con...
The thermal interface conductance between Al and Si was simulated by a non-equilibrium molecular dyn...
The objective of this thesis is to develop a fundamental understanding of the role of the interface ...
International audienceWe provide a derivation allowing the calculation of thermal conductance at int...
International audienceSince the experimental discovery of interface thermal resistance by Kapitza [1...
Many portions of energy generated in the U.S. are not used and take the form of wasted heat due to a...
The impact of mass and bond energy difference and interface defects on thermal boundary conductance ...
Phonons represent the quantization of lattice vibration, responsible for heat transfer in semiconduc...
Interfaces impede heat flow in micro/nanostructured systems. Conventional theories for interfacial t...
In this study, we investigated the temperature dependence and size effect of the thermal boundary re...
The knowledge of inelastic phonon scattering is crucial for the understanding of thermal boundary co...