We investigate high-Q, small mode volume photonic crystal nanobeam cavities using a curved, tapered optical microfiber loop. The strength of the coupling between the cavity and the microfiber loop is shown to depend on the contact position on the nanobeam, angle between the nanobeam and the microfiber, and polarization of the light in the fiber. The results are compared to a resonant scattering measurement
Diamond nanocrystals containing NV color centers are positioned with 100-nanometer-scale accuracy i...
We have successfully demonstrated close experimental control of the resonance splitting/free spectra...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
We investigate high-Q, small mode volume photonic crystal nanobeam cavities using a curved, tapered ...
Using an optical fiber taper that simultaneously probes the spectral and spatial properties of reson...
We review a novel method for characterizing both the spectral and spatial properties of resonant cav...
We present the results of recent investigations into the fabrication and characterization of high-Q,...
A proof-of-concept for a new and entirely CMOS compatible tunable nanobeam cavity is demonstrated in...
We experimentally realized an optical nanofiber-based cavity by combining a 1-D photonic crystal and...
Funded by the National Research Foundation of Korea (NRF) grant (MSIP) (NRF-2007-341-C00018, NRF-201...
We investigate the design, fabrication, and experimental characterization of high quality factor pho...
Planar photonic crystals are constructed by combining two-dimensional periodic structures with high ...
We discuss experimental studies of the interaction between a nanoscopic object and a photonic cryst...
By creating different types of defects in the photonic crystal lattice, various nanophotonics compon...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
Diamond nanocrystals containing NV color centers are positioned with 100-nanometer-scale accuracy i...
We have successfully demonstrated close experimental control of the resonance splitting/free spectra...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
We investigate high-Q, small mode volume photonic crystal nanobeam cavities using a curved, tapered ...
Using an optical fiber taper that simultaneously probes the spectral and spatial properties of reson...
We review a novel method for characterizing both the spectral and spatial properties of resonant cav...
We present the results of recent investigations into the fabrication and characterization of high-Q,...
A proof-of-concept for a new and entirely CMOS compatible tunable nanobeam cavity is demonstrated in...
We experimentally realized an optical nanofiber-based cavity by combining a 1-D photonic crystal and...
Funded by the National Research Foundation of Korea (NRF) grant (MSIP) (NRF-2007-341-C00018, NRF-201...
We investigate the design, fabrication, and experimental characterization of high quality factor pho...
Planar photonic crystals are constructed by combining two-dimensional periodic structures with high ...
We discuss experimental studies of the interaction between a nanoscopic object and a photonic cryst...
By creating different types of defects in the photonic crystal lattice, various nanophotonics compon...
The authors show that light scattering from high-Q planar photonic crystal nanocavities can display ...
Diamond nanocrystals containing NV color centers are positioned with 100-nanometer-scale accuracy i...
We have successfully demonstrated close experimental control of the resonance splitting/free spectra...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...