We analyze the magnitude of the radiation pressure and electrostrictive stresses exerted by light confined inside GaAs semiconductor WGM optomechanical disk resonators, through analytical and numerical means, and find the electrostrictive stress to be of prime importance. We investigate the geometric and photoelastic optomechanical coupling resulting respectively from the deformation of the disk boundary and from the strain-induced refractive index changes in the material, for various mechanical modes of the disks. Photoelastic optomechanical coupling is shown to be a predominant coupling mechanism for certain disk dimensions and mechanical modes, leading to total coupling g and g0 reaching respectively 3 THz/nm and 4 MHz. Finally, we point...
During this doctoral work, we have designed, fabricated and characterised gallium arsenide (GaAs) op...
Photothermal effects have been pointed out as prominent sources of forces in optomechanical systems,...
Optomechanical systems combine extreme sensitivity and bandwidth in the control of mechanical motion...
Abstract: We analyze the magnitude of the radiation pressure and elec-trostrictive stresses exerted ...
Chip-based cavity optomechanical systems are being considered for applications in sensing, metrology...
Cavity optomechanics is the field that studies reciprocal interactions between light and the mechani...
International audienceIn semiconductor nano-optomechanical resonators, several forms of light-matter...
We report on wavelength-sized GaAs optomechanical disk resonators showing ultrastrong optomechanical...
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-...
At the nanoscale, the optomechanical coupling increases thanks to a reduced optical/mechanical inter...
Optomechanics studies the interaction between light and mechanical motion. This PhD thesis reports o...
We experimentally demonstrate the controlled enhancement of the mechanical quality factor Q of galli...
We report on miniature GaAs disk optomechanical resonators vibrating in air in the radiofrequency ra...
Recent experiments demonstrated that GaAs/AlAs based micropillar cavities are promising systems for ...
During this doctoral work, we have designed, fabricated and characterised gallium arsenide (GaAs) op...
Photothermal effects have been pointed out as prominent sources of forces in optomechanical systems,...
Optomechanical systems combine extreme sensitivity and bandwidth in the control of mechanical motion...
Abstract: We analyze the magnitude of the radiation pressure and elec-trostrictive stresses exerted ...
Chip-based cavity optomechanical systems are being considered for applications in sensing, metrology...
Cavity optomechanics is the field that studies reciprocal interactions between light and the mechani...
International audienceIn semiconductor nano-optomechanical resonators, several forms of light-matter...
We report on wavelength-sized GaAs optomechanical disk resonators showing ultrastrong optomechanical...
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-...
At the nanoscale, the optomechanical coupling increases thanks to a reduced optical/mechanical inter...
Optomechanics studies the interaction between light and mechanical motion. This PhD thesis reports o...
We experimentally demonstrate the controlled enhancement of the mechanical quality factor Q of galli...
We report on miniature GaAs disk optomechanical resonators vibrating in air in the radiofrequency ra...
Recent experiments demonstrated that GaAs/AlAs based micropillar cavities are promising systems for ...
During this doctoral work, we have designed, fabricated and characterised gallium arsenide (GaAs) op...
Photothermal effects have been pointed out as prominent sources of forces in optomechanical systems,...
Optomechanical systems combine extreme sensitivity and bandwidth in the control of mechanical motion...