0.15 THz coherent acoustic phonons have been observed in gold nanoparticles embedded in TiO2 thin films by virtue of femtosecond time-resolved transmissivity measurements at room temperature. The generation of these phonons is attributed to the resonant excitation of localized surface plasmon in gold nanoparticles. Their damping time is 55 ps which is acquired by fitting the oscillatory part of time-resolved transmissivity to single exponentially damped cosine function. (C) 2000 American Institute of Physics. [S0021-8979(00)03501-5].Physics, AppliedSCI(E)EI22ARTICLE1612-6148
Coherent acoustic phonons modulate optical, electronic and mechanical properties at ultrahigh freque...
Mechanical vibrational resonances in metal nanoparticles are intensively studied because they provid...
Phonons are considered as a most important origin of scattering and dissipation for electronic coher...
0.15 THz coherent acoustic phonons have been observed in gold nanoparticles embedded in TiO2 thin fi...
Electron dynamics and optical nonlinear response of metallic nanoparticles have been studied extensi...
Coherent acoustic phonons have been observed in Ag nanoscale particles (NSPs) embedded in BaO thin h...
Three kinds of coherent phonons (0.30, 1.90, and 3.75 THz) have been observed in silver nanoparticle...
The ability of a layer of silver nanoparticles with broad size dispersion to excite coherent acousti...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
We demonstrate by numerical analysis enhanced optomechanical interaction in a film-coupled gold nano...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
Fundamental interactions induced by lattice vibrations on ultrafast time scales have become increasi...
Terahertz time domain spectroscopy has been used to study low frequency confined acoustic phonons of...
The optoacoustic response of a single submicron (430 nm) gold particle embedded in a silica thin fil...
Coherent acoustic phonons modulate optical, electronic and mechanical properties at ultrahigh freque...
Mechanical vibrational resonances in metal nanoparticles are intensively studied because they provid...
Phonons are considered as a most important origin of scattering and dissipation for electronic coher...
0.15 THz coherent acoustic phonons have been observed in gold nanoparticles embedded in TiO2 thin fi...
Electron dynamics and optical nonlinear response of metallic nanoparticles have been studied extensi...
Coherent acoustic phonons have been observed in Ag nanoscale particles (NSPs) embedded in BaO thin h...
Three kinds of coherent phonons (0.30, 1.90, and 3.75 THz) have been observed in silver nanoparticle...
The ability of a layer of silver nanoparticles with broad size dispersion to excite coherent acousti...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
We demonstrate by numerical analysis enhanced optomechanical interaction in a film-coupled gold nano...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
Fundamental interactions induced by lattice vibrations on ultrafast time scales have become increasi...
Terahertz time domain spectroscopy has been used to study low frequency confined acoustic phonons of...
The optoacoustic response of a single submicron (430 nm) gold particle embedded in a silica thin fil...
Coherent acoustic phonons modulate optical, electronic and mechanical properties at ultrahigh freque...
Mechanical vibrational resonances in metal nanoparticles are intensively studied because they provid...
Phonons are considered as a most important origin of scattering and dissipation for electronic coher...