At the nanoscale, the optomechanical coupling increases thanks to a reduced optical/mechanical interaction volume and reduced mass of the mechanical oscillator [1,2]. In the context of nano-optomechanics, semiconductors like GaAs offer many assets. First their large refractive index allows confining optical energy in sub-wavelentgh sized high-Q cavities. Second, nanoscale mechanical oscillators are easily coupled to such on-chip cavities using top-down fabrication techniques
Cavity optomechanics examines the mutual interaction between light and mechanical motion for control...
We demonstrate integrated optomechanical circuits with high mechanical quality factors prepared from...
The hybridization of semiconductor optoelectronic devices and nanomechanical resonators provides a n...
Optomechanical coupling between a mechanical oscillator and light trapped in a cavity increases when...
This thesis work focuses on the design, fabrication and measurement of Gallium Arsenide (GaAs) nano-...
Chip-based cavity optomechanical systems are being considered for applications in sensing, metrology...
Optomechanics studies the interaction between light and mechanical motion. This PhD thesis reports o...
Recent experiments demonstrated that GaAs/AlAs based micropillar cavities are promising systems for ...
We report on wavelength-sized GaAs optomechanical disk resonators showing ultrastrong optomechanical...
During this doctoral work, we have designed, fabricated and characterised gallium arsenide (GaAs) op...
Recent developments in integrated on-chip nano-optomechanical systems are reviewed. Silicon-based na...
Cavity optomechanics is the field that studies reciprocal interactions between light and the mechani...
Thermal motion of a room-temperature mechanical resonator typically dominates the quantum backaction...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
We analyze the magnitude of the radiation pressure and electrostrictive stresses exerted by light co...
Cavity optomechanics examines the mutual interaction between light and mechanical motion for control...
We demonstrate integrated optomechanical circuits with high mechanical quality factors prepared from...
The hybridization of semiconductor optoelectronic devices and nanomechanical resonators provides a n...
Optomechanical coupling between a mechanical oscillator and light trapped in a cavity increases when...
This thesis work focuses on the design, fabrication and measurement of Gallium Arsenide (GaAs) nano-...
Chip-based cavity optomechanical systems are being considered for applications in sensing, metrology...
Optomechanics studies the interaction between light and mechanical motion. This PhD thesis reports o...
Recent experiments demonstrated that GaAs/AlAs based micropillar cavities are promising systems for ...
We report on wavelength-sized GaAs optomechanical disk resonators showing ultrastrong optomechanical...
During this doctoral work, we have designed, fabricated and characterised gallium arsenide (GaAs) op...
Recent developments in integrated on-chip nano-optomechanical systems are reviewed. Silicon-based na...
Cavity optomechanics is the field that studies reciprocal interactions between light and the mechani...
Thermal motion of a room-temperature mechanical resonator typically dominates the quantum backaction...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
We analyze the magnitude of the radiation pressure and electrostrictive stresses exerted by light co...
Cavity optomechanics examines the mutual interaction between light and mechanical motion for control...
We demonstrate integrated optomechanical circuits with high mechanical quality factors prepared from...
The hybridization of semiconductor optoelectronic devices and nanomechanical resonators provides a n...