A simplified approach is introduced to describe the thermal behavior of a thin metal film exposed to picoseconds thermal pulses. The approach is based on the assumption that the metal film thermal behavior occurs in two separate stages. In the first stage, electron gas transmits its energy to the solid lattice through electron-phonon coupling and other mechanisms of energy transport are negligible. In the second stage, electron gas and solid lattice are in thermal equilibrium, the energy transfer through electron-phonon coupling is negligible, and thermal diffusion dominates. The proposed approach eliminates the coupling between the energy equations and the reduced differential equations are easier to handle. The proposed approach applies t...
Using a transient thermoreflectance (TTR) technique, several Au films with different thicknesses on ...
The aim of this study is to investigate the effect of interfacial thermal boundary resistance (TBR) ...
This paper adopted the hybrid differential transform approach for studying heat transfer problems in...
A perturbation technique is proposed for solution of the generalized equations governing the thermal...
In the paper the problem of thin metal film subjected to the action of the high laser fluence and th...
In the paper a description of heat transfer in one-dimensional crystalline solids is presented. The ...
Previously, we considered the analytical solution of nonlinear diffusion equation in two-dimensional...
Different models for relaxation dynamics of electrons and phonons in a thin metal film heated by fe...
We report the ultrafast dynamics of electrons and lattice in transition metal thin films (Au, Cu, an...
How the energy transfers during electron-phonon nonequilibrium in thin metal films is still an open ...
Laser short-pulse heating of metallic surfaces results in the thermal separation of electron and lat...
Ultrashort pulse laser heating is not only capable of resolving and observing the ultrafast interact...
The ultra-fast heat transfer in metallic films has attracted great interest in modern femtosecond la...
Electron-phonon (e-ph) relaxation in thin metal films is an important consideration in many ultra-sm...
Laser interactions with metals involve absorption of photon energy by electrons, energy coupling bet...
Using a transient thermoreflectance (TTR) technique, several Au films with different thicknesses on ...
The aim of this study is to investigate the effect of interfacial thermal boundary resistance (TBR) ...
This paper adopted the hybrid differential transform approach for studying heat transfer problems in...
A perturbation technique is proposed for solution of the generalized equations governing the thermal...
In the paper the problem of thin metal film subjected to the action of the high laser fluence and th...
In the paper a description of heat transfer in one-dimensional crystalline solids is presented. The ...
Previously, we considered the analytical solution of nonlinear diffusion equation in two-dimensional...
Different models for relaxation dynamics of electrons and phonons in a thin metal film heated by fe...
We report the ultrafast dynamics of electrons and lattice in transition metal thin films (Au, Cu, an...
How the energy transfers during electron-phonon nonequilibrium in thin metal films is still an open ...
Laser short-pulse heating of metallic surfaces results in the thermal separation of electron and lat...
Ultrashort pulse laser heating is not only capable of resolving and observing the ultrafast interact...
The ultra-fast heat transfer in metallic films has attracted great interest in modern femtosecond la...
Electron-phonon (e-ph) relaxation in thin metal films is an important consideration in many ultra-sm...
Laser interactions with metals involve absorption of photon energy by electrons, energy coupling bet...
Using a transient thermoreflectance (TTR) technique, several Au films with different thicknesses on ...
The aim of this study is to investigate the effect of interfacial thermal boundary resistance (TBR) ...
This paper adopted the hybrid differential transform approach for studying heat transfer problems in...