It is shown that optomechanical forces can cause nonlinear self-channeling of light in a planar dual-slab waveguide. A system of two parallel silica nanowebs, spaced similar to 100 nm and supported inside a fiber capillary, is studied theoretically and an iterative scheme developed to analyze its nonlinear optomechanical properties. Steady-state field distributions and mechanical deformation profiles are obtained, demonstrating that self-channeling is possible in realistic structures at launched powers as low as a few mW. The differential optical nonlinearity of the self-channeled mode can be as much as 10 x 10(6) times higher than the corresponding electronic Kerr nonlinearity. It is also intrinsically broadband, does not utilize resonant ...
We analyze nonlinear dynamics of coupled suspended nano-cavities where static optomechanical potenti...
Recent results on optomechanical and optoacoustic nonlinearities in optical fibres are reported. In ...
International audienceWe present a new experimental technique based on the analysis of beam self-act...
It is shown that optomechanical forces can cause nonlinear self-channeling of light in a planar dual...
It is shown that optomechanical forces can cause nonlinear self-channelling of light in two parallel...
A novel kind of nanostructured optical fiber, displaying an extremely high and optically broadband o...
We theoretically investigate the stability and dynamics of self-channeled beams that form via nonloc...
It is interesting to pose the question: How best to design an optomechanical device, with no electro...
This work is concerned with the optomechanical and optoacoustic interactions in microstructured opti...
Recent experiments in the field of strong optomechanical interactions have focused on either structu...
Controlling light at the nanoscale is a current research frontier, as advanced nanofabrication techn...
We present an overview of the physics of self-written waveguides created in photosensitive optical m...
The freely-suspended glass membranes in a dual-nanoweb fiber, driven at resonance by intensity-modul...
We analyze nonlinear dynamics of coupled suspended nano-cavities where static optomechanical potenti...
Recent results on optomechanical and optoacoustic nonlinearities in optical fibres are reported. In ...
International audienceWe present a new experimental technique based on the analysis of beam self-act...
It is shown that optomechanical forces can cause nonlinear self-channeling of light in a planar dual...
It is shown that optomechanical forces can cause nonlinear self-channelling of light in two parallel...
A novel kind of nanostructured optical fiber, displaying an extremely high and optically broadband o...
We theoretically investigate the stability and dynamics of self-channeled beams that form via nonloc...
It is interesting to pose the question: How best to design an optomechanical device, with no electro...
This work is concerned with the optomechanical and optoacoustic interactions in microstructured opti...
Recent experiments in the field of strong optomechanical interactions have focused on either structu...
Controlling light at the nanoscale is a current research frontier, as advanced nanofabrication techn...
We present an overview of the physics of self-written waveguides created in photosensitive optical m...
The freely-suspended glass membranes in a dual-nanoweb fiber, driven at resonance by intensity-modul...
We analyze nonlinear dynamics of coupled suspended nano-cavities where static optomechanical potenti...
Recent results on optomechanical and optoacoustic nonlinearities in optical fibres are reported. In ...
International audienceWe present a new experimental technique based on the analysis of beam self-act...