The effect of electron-phonon (e-ph) coupling on thermal transport across metal-nonmetal interfaces is yet to be completely understood. In this paper, we use a series of molecular-dynamics (MD) simulations with e-ph coupling effect included by Langevin dynamics to calculate the thermal conductance at a model metal-nonmetal interface. It is found that while e-ph coupling can present additional thermal resistance on top of the phonon-phonon thermal resistance, it can also make the phonon-phonon thermal conductance larger than the pure phonon transport case. This is because the e-ph interaction can disturb the phonon subsystem and enhance the energy communication between different phonon modes inside the metal. This facilitates redistributing ...
Interfaces impede heat flow in micro/nanostructured systems. Conventional theories for interfacial t...
ABSTRACT: We present measurements of the thermal conductance of self-assembled monolayer (SAM) junct...
Thermal transport through model copper-polyethylene interfaces is studied using two-temperature none...
We theoretically investigate the thermal boundary conductance across metal-nonmetal interf...
Many portions of energy generated in the U.S. are not used and take the form of wasted heat due to a...
Metallic components and metal-dielectric interfaces appear widely in modern electronics and the ther...
The thermal interface conductance between Al and Si was simulated by a non-equilibrium molecular dyn...
We adapt existing phonon heat transport methods to compute the phononic thermal conductance of metal...
The impact of mass and bond energy difference and interface defects on thermal boundary conductance ...
Nanoscale heat transport has become a crucial research topic due to the growing importance of nanote...
Phonons represent the quantization of lattice vibration, responsible for heat transfer in semiconduc...
Understanding thermal transport across metal/semiconductor interfaces is crucial for the heat d...
We have used a two-temperature nonequilibrium molecular dynamics method for predicting interfacial t...
Motivated by recent experiments [Science 355, 1192 (2017); Nat. Nanotechnol. 12, 430 (2017)], we pre...
Recent experiments suggest that the interfacial thermal conductance of transfer printed metal-diele...
Interfaces impede heat flow in micro/nanostructured systems. Conventional theories for interfacial t...
ABSTRACT: We present measurements of the thermal conductance of self-assembled monolayer (SAM) junct...
Thermal transport through model copper-polyethylene interfaces is studied using two-temperature none...
We theoretically investigate the thermal boundary conductance across metal-nonmetal interf...
Many portions of energy generated in the U.S. are not used and take the form of wasted heat due to a...
Metallic components and metal-dielectric interfaces appear widely in modern electronics and the ther...
The thermal interface conductance between Al and Si was simulated by a non-equilibrium molecular dyn...
We adapt existing phonon heat transport methods to compute the phononic thermal conductance of metal...
The impact of mass and bond energy difference and interface defects on thermal boundary conductance ...
Nanoscale heat transport has become a crucial research topic due to the growing importance of nanote...
Phonons represent the quantization of lattice vibration, responsible for heat transfer in semiconduc...
Understanding thermal transport across metal/semiconductor interfaces is crucial for the heat d...
We have used a two-temperature nonequilibrium molecular dynamics method for predicting interfacial t...
Motivated by recent experiments [Science 355, 1192 (2017); Nat. Nanotechnol. 12, 430 (2017)], we pre...
Recent experiments suggest that the interfacial thermal conductance of transfer printed metal-diele...
Interfaces impede heat flow in micro/nanostructured systems. Conventional theories for interfacial t...
ABSTRACT: We present measurements of the thermal conductance of self-assembled monolayer (SAM) junct...
Thermal transport through model copper-polyethylene interfaces is studied using two-temperature none...