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1.
Opt Express ; 17(24): 22005-11, 2009 Nov 23.
Article in English | MEDLINE | ID: mdl-19997445

ABSTRACT

Tuning of the resonant wavelength of a single hole defect cavity in planar photonic crystals was demonstrated using transmission spectroscopy. Local post-production processing of single holes in a planar photonic crystal is carried out after selectively opening a masking layer by focused ion beam milling. The resonance was blue-shifted by enlargement of selected holes using local wet chemical etching and red-shifted by infiltration with liquid crystals. This method can be applied to precisely control the resonant frequency, and can also be used for mode selective tuning.


Subject(s)
Liquid Crystals , Optics and Photonics , Crystallization , Equipment Design , Ions , Nanostructures , Nanotechnology/methods , Photons , Polymers/chemistry , Refractometry
2.
Opt Lett ; 34(14): 2207-9, 2009 Jul 15.
Article in English | MEDLINE | ID: mdl-19823550

ABSTRACT

Wavelength-sized point defect cavities coupled to access waveguides are reported for deeply etched InP/InGaAsP/InP two-dimensional photonic crystals. The observed quality factor of 60 is comparable to those found for one-row defect Fabry-Perot cavities and for simple point defect cavities in membranes. The quality factor was changed by varying the number of rows of holes. Upon infiltration of the holes with liquid crystal, frequency tuning was demonstrated.

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