Engineering of phononic resonances in ferroelectric structures is a new knob to realize novel multifunctional devices. Here we show the possibility of predictively designing and fabricating phononic nanoresonators utilizing combinations of MBE-grown insulating (BaTiO3, SrTiO3) and metallic (SrRuO3) oxides. We experimentally demonstrate the confinement of acoustic waves in the 100-GHz frequency range in a phonon nanocavity, and the the time and spatial beatings resulting from the coupling of two different hybrid nanocavities forming an acoustic molecule. Additionally, the direct measurement of Bloch-like oscillations of acoustic phonons is observed in a system formed by ten coupled resonators. Utilizing coherent phonon generation techniques,...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
We show the resonant behavior of ?0.5-THz longitudinal acoustic (LA) phonons in an acoustic nanocavi...
Nanoscale phonon transport is a key process that governs thermal conduction in a wide range of mater...
The engineering of phononic resonances in ferroelectric structures appears as a new knob in the desi...
Engineering of phonons, that is, collective lattice vibrations in crystals, is essential for manipul...
Nanophononics, i.e. acoustic phonon engineering, is a promising research domain with potential in th...
Inspired by concepts developed for fermionic systems in the framework of condensed matter physics, t...
We study the linear and nonlinear acoustic response of SrTiO3 across its ferroelastic transition at ...
Connecting nanoscale mechanical resonators to microwave quantum circuits opens new avenues for stori...
We report generation of ultra-broadband longitudinal acoustic coherent phonon wavepackets in SrTiO3 ...
This dissertation is focused on experimental investigation of confined acoustic phonons in nanostruc...
Surface acoustic waves (SAWs) offer a unique degree of freedom to manipulate charge carriers in a 2 ...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe study experimentally a chain of defect resonators in a phononic crystal sla...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
We show the resonant behavior of ?0.5-THz longitudinal acoustic (LA) phonons in an acoustic nanocavi...
Nanoscale phonon transport is a key process that governs thermal conduction in a wide range of mater...
The engineering of phononic resonances in ferroelectric structures appears as a new knob in the desi...
Engineering of phonons, that is, collective lattice vibrations in crystals, is essential for manipul...
Nanophononics, i.e. acoustic phonon engineering, is a promising research domain with potential in th...
Inspired by concepts developed for fermionic systems in the framework of condensed matter physics, t...
We study the linear and nonlinear acoustic response of SrTiO3 across its ferroelastic transition at ...
Connecting nanoscale mechanical resonators to microwave quantum circuits opens new avenues for stori...
We report generation of ultra-broadband longitudinal acoustic coherent phonon wavepackets in SrTiO3 ...
This dissertation is focused on experimental investigation of confined acoustic phonons in nanostruc...
Surface acoustic waves (SAWs) offer a unique degree of freedom to manipulate charge carriers in a 2 ...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe study experimentally a chain of defect resonators in a phononic crystal sla...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
We show the resonant behavior of ?0.5-THz longitudinal acoustic (LA) phonons in an acoustic nanocavi...
Nanoscale phonon transport is a key process that governs thermal conduction in a wide range of mater...