We investigate the impulsively excited acoustic dynamics of nanoscale Au triangles of different sizes and thicknesses on silicon and glass substrates. We employ high-speed asynchronous optical sampling in order to study the damping of the acoustic vibrations with high sensitivity in the time domain. From the observed damping dynamics we deduce the reflection coefficient of acoustic energy from the gold substrate interface. The observed damping times of coherent acoustic vibrations are found to be significantly longer than expected from the acoustic impedance mismatch for an ideal gold substrate interface, hence pointing towards a reduced coupling strength. The strength of the coupling can be determined quantitatively. For Au triangles with ...
Single nanoparticles are shown to develop a localized acoustic resonance, the bouncing mode, when pl...
The ability of a layer of silver nanoparticles with broad size dispersion to excite coherent acousti...
We combine ultrafast pump–probe spectroscopy with optical trapping to study homogeneous damping of t...
The mechanical vibrations of individual gold nanodisks nanopatterned on a sapphire substrate are inv...
International audienceThe development of applications based on metallic nano-objects requires an ext...
The acoustic vibration of single gold nanoprism pairs on a glass substrate has been investigated in ...
The mechanical vibrations of individual gold nanodisks nanopatterned on a sapphire substrate are inv...
Asingle gold nanorod dropped on the surface of a silica substrate is used as a transient optoacousti...
We demonstrate and discuss acoustic vibrations in spherical shell particles. The particles consist o...
We present measurements of the acoustic vibrations of single gold nanorods deposited on a glass subs...
To fabricate robust metallic nanostructures with top-down patterning methods such as electron-beam l...
International audienceRecent optical time-resolved experiments on single supported nano-objects (gol...
We investigated the acoustic vibrations of gold nanobipyramids and bimetallic gold silver core-shell...
Data supporting "Interrogating Nanojunctions Using Ultraconfined Acoustoplasmonic Coupling". Abstrac...
Single nanoparticles are shown to develop a localized acoustic resonance, the bouncing mode, when pl...
The ability of a layer of silver nanoparticles with broad size dispersion to excite coherent acousti...
We combine ultrafast pump–probe spectroscopy with optical trapping to study homogeneous damping of t...
The mechanical vibrations of individual gold nanodisks nanopatterned on a sapphire substrate are inv...
International audienceThe development of applications based on metallic nano-objects requires an ext...
The acoustic vibration of single gold nanoprism pairs on a glass substrate has been investigated in ...
The mechanical vibrations of individual gold nanodisks nanopatterned on a sapphire substrate are inv...
Asingle gold nanorod dropped on the surface of a silica substrate is used as a transient optoacousti...
We demonstrate and discuss acoustic vibrations in spherical shell particles. The particles consist o...
We present measurements of the acoustic vibrations of single gold nanorods deposited on a glass subs...
To fabricate robust metallic nanostructures with top-down patterning methods such as electron-beam l...
International audienceRecent optical time-resolved experiments on single supported nano-objects (gol...
We investigated the acoustic vibrations of gold nanobipyramids and bimetallic gold silver core-shell...
Data supporting "Interrogating Nanojunctions Using Ultraconfined Acoustoplasmonic Coupling". Abstrac...
Single nanoparticles are shown to develop a localized acoustic resonance, the bouncing mode, when pl...
The ability of a layer of silver nanoparticles with broad size dispersion to excite coherent acousti...
We combine ultrafast pump–probe spectroscopy with optical trapping to study homogeneous damping of t...