The application of all-optical time resolved techniques to nano structured Surface Phononic Crystals enables the generation and detection of hypersonic frequency surface acoustic waves up to 50 GHz, with great potential for breakthroughs in nano metrology and sensing applications. Here we review the advances in this field both in the theory and experiments, focusing on the progress in non-destructive ultrathin films nanometrology and the promise of dramatically increasing mass sensors sensitivity due to enhanced acoustic wave surface confinement
International audienceWhen phononic crystal were first introduced in the early 1990's, their ability...
The impulsive acoustic dynamics of soft polymeric surface phononic crystals is investigated here in ...
We investigate experimentally and by numerical simulation the interaction between ultrahigh frequenc...
The application of all-optical time resolved techniques to nano structured Surface Phononic Crystals...
The application of all-optical time resolved techniques to nanostructured surface phononic crystals ...
A novel design for photoacoustic mass sensors operating above 100 GHz is proposed. The design s bas...
We study ultrahigh frequency surface acoustic wave propagation in nickel-on-sapphire nanostructures....
International audienceThe development of transducers to excite and detect coherent surface acoustic ...
In this work, we generate and probe the shortest wavelength surface acoustic waves to date, at 45 nm...
We report on the generation of surface phonons up to the GHz range utilizing laser inter-ference tec...
Using ultrashort pulsed optical excitation and interferometric detection, we dynamically image ultra...
The optical properties of small metallic particles allow us to bridge the gap between the myriad of ...
We use femtosecond extreme ultraviolet pulses derived from a free electron laser to excite and probe...
We report on nanoscale pillar-based hypersonic phononic crystals in single crystal Z-cut lithium nio...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
International audienceWhen phononic crystal were first introduced in the early 1990's, their ability...
The impulsive acoustic dynamics of soft polymeric surface phononic crystals is investigated here in ...
We investigate experimentally and by numerical simulation the interaction between ultrahigh frequenc...
The application of all-optical time resolved techniques to nano structured Surface Phononic Crystals...
The application of all-optical time resolved techniques to nanostructured surface phononic crystals ...
A novel design for photoacoustic mass sensors operating above 100 GHz is proposed. The design s bas...
We study ultrahigh frequency surface acoustic wave propagation in nickel-on-sapphire nanostructures....
International audienceThe development of transducers to excite and detect coherent surface acoustic ...
In this work, we generate and probe the shortest wavelength surface acoustic waves to date, at 45 nm...
We report on the generation of surface phonons up to the GHz range utilizing laser inter-ference tec...
Using ultrashort pulsed optical excitation and interferometric detection, we dynamically image ultra...
The optical properties of small metallic particles allow us to bridge the gap between the myriad of ...
We use femtosecond extreme ultraviolet pulses derived from a free electron laser to excite and probe...
We report on nanoscale pillar-based hypersonic phononic crystals in single crystal Z-cut lithium nio...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
International audienceWhen phononic crystal were first introduced in the early 1990's, their ability...
The impulsive acoustic dynamics of soft polymeric surface phononic crystals is investigated here in ...
We investigate experimentally and by numerical simulation the interaction between ultrahigh frequenc...