We study optical bistability associated with Fano resonances in high-Q/V[subscript m] silicon photonic crystal nanocavities through the nonlinear coupled-mode theory framework. The chi [superscript (3)] effects, free-carrier dynamics, thermal effects, and linear losses are included and investigated numerically. © 2007 Optical Society of America
We observe experimentally all-optical analogue to electromagnetically induced transparency with sili...
Abstract Coupled optical cavities are an attractive on-chip optical platform for realizing quantum m...
We report on the observation of optical bistability in an integrated planar microresonator with embe...
We observe experimentally optical bistability enhanced through Fano interferences in high-Q localize...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
We give an overview of theoretical and experimental results obtained with high-quality and small vol...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Silicon is known to be a very good material for the realization of high-Q, low-volume photonic cavit...
We derive a coupled mode theory for the interaction of an optical cavity with a waveguide that inclu...
Photonic crystal cavities enable strong light–matter interactions, with numerous applications, such ...
Two-photon absorption, free-carrier absorption and dispersion, and thermo-optic dispersion in high-Q...
Photonic crystal waveguides (PhCWG) with intentional defects and unavoidable disorder exhibit high q...
We demonstrate and distinguish experimentally the existence of a special type of Fano resonances at ...
Photonic crystal (PhC) nanocavities allow to confine light with ultra high quality (Q) factors to wa...
We observe experimentally all-optical analogue to electromagnetically induced transparency with sili...
Abstract Coupled optical cavities are an attractive on-chip optical platform for realizing quantum m...
We report on the observation of optical bistability in an integrated planar microresonator with embe...
We observe experimentally optical bistability enhanced through Fano interferences in high-Q localize...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
We give an overview of theoretical and experimental results obtained with high-quality and small vol...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Silicon is known to be a very good material for the realization of high-Q, low-volume photonic cavit...
We derive a coupled mode theory for the interaction of an optical cavity with a waveguide that inclu...
Photonic crystal cavities enable strong light–matter interactions, with numerous applications, such ...
Two-photon absorption, free-carrier absorption and dispersion, and thermo-optic dispersion in high-Q...
Photonic crystal waveguides (PhCWG) with intentional defects and unavoidable disorder exhibit high q...
We demonstrate and distinguish experimentally the existence of a special type of Fano resonances at ...
Photonic crystal (PhC) nanocavities allow to confine light with ultra high quality (Q) factors to wa...
We observe experimentally all-optical analogue to electromagnetically induced transparency with sili...
Abstract Coupled optical cavities are an attractive on-chip optical platform for realizing quantum m...
We report on the observation of optical bistability in an integrated planar microresonator with embe...