Heat conduction in dielectric thin films is a critical issue in the design of electronic devices and packages. Depending on the material properties, there exists a range of film thickness where the Fourier law, used for macroscale heat conduction, cannot be applied. This paper shows that in this microscale regime, heat transport by lattice vibrations or phonons can be analyzed as a radiative transfer problem. Based on Boltzmann transport theory, an equation of phonon radiative transfer (EPRT) is developed. In the acoustically thick limit, %L » 1, or the macroscale regime, where the film thickness is much larger than the phonon-scattering mean free path, the EPR T reduces to the Fourier law. In the acoustically thin limit, £L « 1, the EPR T ...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
Cross-plane heat transport in thin films with thicknesses comparable to the phonon mean free paths i...
The heat transfer in electrically insulating thin film materials is predominantly governed by phonon...
International audienceBased on the phonon Boltzmann transport equation under the relaxation time app...
International audienceBased on the phonon Boltzmann transport equation under the relaxation time app...
International audienceBased on the phonon Boltzmann transport equation under the relaxation time app...
Cross-plane heat transport in thin films with thickness comparable to the phonon mean free paths is ...
Cross-plane heat transport in thin films with thickness comparable to the phonon mean free paths is ...
The phonon Boltzmann equation is solved numerically in order to study the phonon thermal conductivit...
The phonon Boltzmann equation is solved numerically in order to study the phonon thermal conductivit...
Results are presented from numerical simulations of transient temperature distributions in one-dimen...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
Cross-plane heat transport in thin films with thicknesses comparable to the phonon mean free paths i...
The heat transfer in electrically insulating thin film materials is predominantly governed by phonon...
International audienceBased on the phonon Boltzmann transport equation under the relaxation time app...
International audienceBased on the phonon Boltzmann transport equation under the relaxation time app...
International audienceBased on the phonon Boltzmann transport equation under the relaxation time app...
Cross-plane heat transport in thin films with thickness comparable to the phonon mean free paths is ...
Cross-plane heat transport in thin films with thickness comparable to the phonon mean free paths is ...
The phonon Boltzmann equation is solved numerically in order to study the phonon thermal conductivit...
The phonon Boltzmann equation is solved numerically in order to study the phonon thermal conductivit...
Results are presented from numerical simulations of transient temperature distributions in one-dimen...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
Cross-plane heat transport in thin films with thicknesses comparable to the phonon mean free paths i...