The mobile nature of fluids is fully exploited in planar photonic crystals to not only tune and reconfigure in situ optical microcavities, in a continuous and reversible manner, but also to create "a posteriori" spatially programmable cavities. Both the amount of liquid and the location of the selectively infiltrated area can be accurately controlled either mechanically, using a microfiber manipulator, or optically, using a laser-controlled evaporation and recondensation scheme. The wide applicability is illustrated by tuning a cavity resonance over 50¿nm, adjusting the frequency splitting of an originally degenerate cavity mode, and by freely moving a liquid-induced cavity through dragging a microdroplet
The authors present a technique that allows to modify the local characteristics of two-dimensional p...
We demonstrate mode-dependent tuning of liquid crystal (4-pentyl-4’cyanobiphenyl, 5CB, Merck) infilt...
The post-fabrication control of evanescent tunnelling in photonic crystal molecules is demonstrated ...
The mobile nature of fluids is fully exploited in planar photonic crystals to not only tune and reco...
We present a spectral tuning mechanism of photonic crystal microcavities based on microfluidics. The...
A microfluidic double heterostructure cavity is created in a silicon planar photonic crystal wavegui...
We demonstrate postprocessed and reconfigurable photonic crystal double-heterostructure cavities via...
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 ...
Tuning of the resonant wavelength of a single hole defect cavity in planar photonic crystals was dem...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...
The authors present a technique that allows to modify the local characteristics of two-dimensional p...
We demonstrate mode-dependent tuning of liquid crystal (4-pentyl-4’cyanobiphenyl, 5CB, Merck) infilt...
The post-fabrication control of evanescent tunnelling in photonic crystal molecules is demonstrated ...
The mobile nature of fluids is fully exploited in planar photonic crystals to not only tune and reco...
We present a spectral tuning mechanism of photonic crystal microcavities based on microfluidics. The...
A microfluidic double heterostructure cavity is created in a silicon planar photonic crystal wavegui...
We demonstrate postprocessed and reconfigurable photonic crystal double-heterostructure cavities via...
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 ...
Tuning of the resonant wavelength of a single hole defect cavity in planar photonic crystals was dem...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...
The authors present a technique that allows to modify the local characteristics of two-dimensional p...
We demonstrate mode-dependent tuning of liquid crystal (4-pentyl-4’cyanobiphenyl, 5CB, Merck) infilt...
The post-fabrication control of evanescent tunnelling in photonic crystal molecules is demonstrated ...