We observe experimentally optical bistability enhanced through Fano interferences in high-Q localized silicon photonic crystal resonances (Q ~ 30,000 and modal volume ~ 0.98 cubic wavelengths). This phenomenon is analyzed through nonlinear coupled-mode formalism, including the interplay of chi(3) effects such as two-photon absorption and related free-carrier dynamics, and optical Kerr as well as thermal effects and linear losses. Our experimental and theoretical results demonstrate for the first time Fano-resonance based bistable states with switching thresholds of 185 micro-Watt and 4.5 fJ internally stored cavity energy (~ 540 fJ consumed energy) in silicon for scalable optical buffering and logic
We report on the modeling, simulation, and experimental demonstration of complete mode crossings of ...
We demonstrate the dynamics of stimulated Raman scattering in designed high-Q/Vm silicon photonic ba...
We demonstrate the enhancement of nonlinear response and bistable switching in the Mach-Zehnder inte...
We study optical bistability associated with Fano resonances in high-Q/V[subscript m] silicon photon...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
Two-photon absorption, free-carrier absorption and dispersion, and thermo-optic dispersion in high-Q...
We describe the effect of symmetry breaking in a system with two coupled Fano resonators. A general ...
We employ an effective discrete model for the study of wave propagation in a photonic crystal wavegu...
We analyze the resonant linear and nonlinear transmission through a photonic crystal waveguide side-...
Photonic crystal (PhC) nanocavities allow to confine light with ultra high quality (Q) factors to wa...
Photonic crystal cavities enable strong light–matter interactions, with numerous applica-tions, such...
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...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
We demonstrate actuation of a silicon photonic crystal membrane with a repulsive optical gradient fo...
We report on the modeling, simulation, and experimental demonstration of complete mode crossings of ...
We demonstrate the dynamics of stimulated Raman scattering in designed high-Q/Vm silicon photonic ba...
We demonstrate the enhancement of nonlinear response and bistable switching in the Mach-Zehnder inte...
We study optical bistability associated with Fano resonances in high-Q/V[subscript m] silicon photon...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
Two-photon absorption, free-carrier absorption and dispersion, and thermo-optic dispersion in high-Q...
We describe the effect of symmetry breaking in a system with two coupled Fano resonators. A general ...
We employ an effective discrete model for the study of wave propagation in a photonic crystal wavegu...
We analyze the resonant linear and nonlinear transmission through a photonic crystal waveguide side-...
Photonic crystal (PhC) nanocavities allow to confine light with ultra high quality (Q) factors to wa...
Photonic crystal cavities enable strong light–matter interactions, with numerous applica-tions, such...
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...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
We demonstrate actuation of a silicon photonic crystal membrane with a repulsive optical gradient fo...
We report on the modeling, simulation, and experimental demonstration of complete mode crossings of ...
We demonstrate the dynamics of stimulated Raman scattering in designed high-Q/Vm silicon photonic ba...
We demonstrate the enhancement of nonlinear response and bistable switching in the Mach-Zehnder inte...