Multiply resonant high quality photonic crystal nanocavities
arXiv:1105.6134 · doi:10.1063/1.3607281
Abstract
We propose and experimentally demonstrate a photonic crystal nanocavity with multiple resonances that can be tuned nearly independently. The design is composed of two orthogonal intersecting nanobeam cavities. Experimentally, we measure cavity quality factors of 6,600 and 1000 for resonances separated by 382 nm; we measure a maximum separation between resonances of 506 nm. These structures are promising for enhancing efficiency in nonlinear optical processes such as sum/difference frequency and stimulated Raman scattering.
3 figures
References in corpus (5)
- High Quality factor photonic crystal nanobeam cavities
- Photonic Crystal Nanobeam Cavity Strongly Coupled to the Feeding Waveguide
- Ultra-high-Q TE/TM dual-polarized photonic crystal nanocavities
- Gallium Phosphide Photonic Crystal Nanocavities in the Visible
- Efficient Terahertz Generation in Triply Resonant Nonlinear Photonic Crystal Microcavities
Cited by in corpus (10)
- Engineered Quantum Dot Single Photon Sources
- Single-photon blockade in doubly resonant nanocavities with second-order nonlinearity
- Second harmonic generation in GaAs photonic crystal cavities in (111)B and (001) crystal orientations
- Second Harmonic Generation in Photonic Crystal Cavities in (111)-Oriented GaAs
- Multimode nanobeam cavities for nonlinear optics: high quality resonances separated by an octave
- Generation of Rabi frequency radiation using exciton-polaritons
- Nonlinear frequency conversion using high quality modes in GaAs nanobeam cavities
- Deterministic subtraction of single photons based on a coupled single quantum dot-cavity system
- Overcoming Auger recombination in nanocrystal quantum dot laser using spontaneous emission enhancement
- Localized guided-mode and cavity-mode double resonance in photonic crystal nanocavities