We present a spectral tuning mechanism of photonic crystal microcavities based on microfluidics. The microinfiltration with water of one or few cavity holes and its subsequent controlled evaporation allow us to tune the cavity resonances in a spectral range larger than 20 nm, with subnanometer accuracy, and we also observe that the addition of water in the microcavity region improves its quality factor Q. © 2009 American Institute of Physics
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
The marriage of photonics and microfluidics ( optofluidics ) uses the inherent mobility of fluids to...
We have found a blueshift in the cavity modes confined in two-dimensional photonic crystal microcavi...
We present a spectral tuning mechanism of photonic crystal microcavities based on microfluidics. The...
The mobile nature of fluids is fully exploited in planar photonic crystals to not only tune and reco...
We demonstrate theoretically that the resonance frequencies of high-Q microcavities in two-dimension...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystal micr...
We demonstrate the spectral and spatial reconfigurability of photonic crystal double-heterostructure...
We demonstrate post-processed and reconfigurable photonic crystal double-heterostructure nanocavitie...
International audienceWe identify two physical mechanisms which drastically increase the Q/V factor ...
A microfluidic double heterostructure cavity is created in a silicon planar photonic crystal wavegui...
A photonic crystal (PhC), which is an artificial material with a periodic modulation of the refracti...
A fine control of a photonic molecule is obtained by nanofluidic techniques. The coupling condition ...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
The marriage of photonics and microfluidics ( optofluidics ) uses the inherent mobility of fluids to...
We have found a blueshift in the cavity modes confined in two-dimensional photonic crystal microcavi...
We present a spectral tuning mechanism of photonic crystal microcavities based on microfluidics. The...
The mobile nature of fluids is fully exploited in planar photonic crystals to not only tune and reco...
We demonstrate theoretically that the resonance frequencies of high-Q microcavities in two-dimension...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystal micr...
We demonstrate the spectral and spatial reconfigurability of photonic crystal double-heterostructure...
We demonstrate post-processed and reconfigurable photonic crystal double-heterostructure nanocavitie...
International audienceWe identify two physical mechanisms which drastically increase the Q/V factor ...
A microfluidic double heterostructure cavity is created in a silicon planar photonic crystal wavegui...
A photonic crystal (PhC), which is an artificial material with a periodic modulation of the refracti...
A fine control of a photonic molecule is obtained by nanofluidic techniques. The coupling condition ...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
The marriage of photonics and microfluidics ( optofluidics ) uses the inherent mobility of fluids to...
We have found a blueshift in the cavity modes confined in two-dimensional photonic crystal microcavi...