A fine control of a photonic molecule is obtained by nanofluidic techniques. The coupling condition between the modes of two photonic crystal nanocavities is modified by spectrally tuning each single resonator. Clear mode anticrossing and transition from localized to delocalized states are observed. The detuning induced by disorder, always present in real device, is experimentally compensated by locally modifying the photonic environment of the cavity. © 2010 American Institute of Physics
We discuss experimental studies of the interaction between a nanoscopic object and a photonic crysta...
Actively controlling the properties of localized optical modes is crucial for cavity quantum electro...
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 ...
Photonic crystal nanocavities play an important part in the future of nanophotonics. For many system...
A local tuning of the modes of photonic crystal systems both to blue and to red sides of the resonan...
A complete control of the coupling between the modes of two photonic crystal microcavities is obtain...
We present a spectral tuning mechanism of photonic crystal microcavities based on microfluidics. The...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
In this letter, we experimentally demonstrate resonant-wavelength control of a series of 16 nanocavi...
In this work, we demonstrate that the compound mode properties of coupled photonic-crystal cavities ...
International audienceIn this paper, we present a numerical study (using FiniteDifference Times Doma...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
By integrating soft-lithography-based nanofluidics with silicon nanophotonics, we demonstrate dynami...
We discuss experimental studies of the interaction between a nanoscopic object and a photonic crysta...
Actively controlling the properties of localized optical modes is crucial for cavity quantum electro...
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 ...
Photonic crystal nanocavities play an important part in the future of nanophotonics. For many system...
A local tuning of the modes of photonic crystal systems both to blue and to red sides of the resonan...
A complete control of the coupling between the modes of two photonic crystal microcavities is obtain...
We present a spectral tuning mechanism of photonic crystal microcavities based on microfluidics. The...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
In this letter, we experimentally demonstrate resonant-wavelength control of a series of 16 nanocavi...
In this work, we demonstrate that the compound mode properties of coupled photonic-crystal cavities ...
International audienceIn this paper, we present a numerical study (using FiniteDifference Times Doma...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
By integrating soft-lithography-based nanofluidics with silicon nanophotonics, we demonstrate dynami...
We discuss experimental studies of the interaction between a nanoscopic object and a photonic crysta...
Actively controlling the properties of localized optical modes is crucial for cavity quantum electro...
A photonic crystal (PhC), which is an artificial material with a periodic modulation of the refracti...