Electron-phonon (e-ph) relaxation in thin metal films is an important consideration in many ultra-small and ultra-fast applications. In this work, e-ph relaxation in thin gold and aluminum films has been studied using the transient thermoreflectance technique which is demonstrated sensitive enough to study the relaxation process. The optical properties of the thin metal films are different from those of bulk metal and have been measured. Based on confirmation of the measurements, the effects of metal type, film thickness, and interface on e-ph relaxation have been experimentally studied. The thermoreflectance traces of gold and aluminum films have been compared. The results show that the e-ph relaxation and the effect of electron and lattic...
Ultrashort pulse laser heating is not only capable of resolving and observing the ultrafast interact...
The temperature dependence of peak widths in high-resolution angle-resolved photoelectron spectrosco...
By irradiating a thin metal foil with an intense short-pulse laser, we have created a uniform system...
With the size reduction and operation frequency increase in electronic devices and high radio freque...
How the energy transfers during electron-phonon nonequilibrium in thin metal films is still an open ...
The electron-phonon relaxation and electrical resistivity of several polycrystalline thin gold films...
Using a transient thermoreflectance (TTR) technique, several Au films with different thicknesses on ...
The temperature-dependent reflectivity of metals is quantified by the thermoreflectance coefficient,...
We report the ultrafast dynamics of electrons and lattice in transition metal thin films (Au, Cu, an...
The pump-probe technique is an ultrafast spectroscopy method of detecting the dynamics of energy car...
Using a transient thermoreflectance (TTR) technique,several Au films with different thicknesses on g...
In a sandwich consisting of a thin Au film and a thin Bi film insulated by a 500 Å SiO layer the ele...
We observe a crossover from electron-phonon (e-ph) coupling limited energy relaxation to that govern...
A simplified approach is introduced to describe the thermal behavior of a thin metal film exposed to...
Thermal phenomena, such as heat propagation, lattice melting, and ablation, are the result of energy...
Ultrashort pulse laser heating is not only capable of resolving and observing the ultrafast interact...
The temperature dependence of peak widths in high-resolution angle-resolved photoelectron spectrosco...
By irradiating a thin metal foil with an intense short-pulse laser, we have created a uniform system...
With the size reduction and operation frequency increase in electronic devices and high radio freque...
How the energy transfers during electron-phonon nonequilibrium in thin metal films is still an open ...
The electron-phonon relaxation and electrical resistivity of several polycrystalline thin gold films...
Using a transient thermoreflectance (TTR) technique, several Au films with different thicknesses on ...
The temperature-dependent reflectivity of metals is quantified by the thermoreflectance coefficient,...
We report the ultrafast dynamics of electrons and lattice in transition metal thin films (Au, Cu, an...
The pump-probe technique is an ultrafast spectroscopy method of detecting the dynamics of energy car...
Using a transient thermoreflectance (TTR) technique,several Au films with different thicknesses on g...
In a sandwich consisting of a thin Au film and a thin Bi film insulated by a 500 Å SiO layer the ele...
We observe a crossover from electron-phonon (e-ph) coupling limited energy relaxation to that govern...
A simplified approach is introduced to describe the thermal behavior of a thin metal film exposed to...
Thermal phenomena, such as heat propagation, lattice melting, and ablation, are the result of energy...
Ultrashort pulse laser heating is not only capable of resolving and observing the ultrafast interact...
The temperature dependence of peak widths in high-resolution angle-resolved photoelectron spectrosco...
By irradiating a thin metal foil with an intense short-pulse laser, we have created a uniform system...