We review a novel method for characterizing both the spectral and spatial properties of resonant cavities within two-dimensional photonic crystals (PCs). An optical fiber taper serves as an external waveguide probe whose micron-scale field is used to source and couple light from the cavity modes, which appear as resonant features in the taper's wavelength-dependent transmission spectrum when it is placed within the cavity's near field. Studying the linewidth and depth of these resonances as a function of the taper's position with respect to the resonator produces quantitative measurements of the quality factor Q and modal volume Veff of the resonant cavity modes. Polarization information about the cavity modes can be obtained by studying th...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
A two-dimensional photonic crystal microcavity design supporting a wavelength-scale volume resonant ...
We propose two-dimensional photonic-crystal-embedded microcavities. Numerical simulations of wavegui...
Abstract—We review a novel method for characterizing both the spectral and spatial properties of res...
We review a novel method for characterizing both the spectral and spatial properties of resonant cav...
Using an optical fiber taper that simultaneously probes the spectral and spatial properties of reson...
A two-dimensional photonic crystal semiconductor microcavity with a quality factor Q ~ 40,000 and a ...
The demonstration of an optical fiber based probe for efficiently exciting the waveguide modes of hi...
Using a micromanipulation technique, a planar photonic crystal nanocavity made from a thin semicondu...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Optical resonators are structures that allow light to circulate and store energy for a duration of t...
We discuss experimental studies of the interaction between a nanoscopic object and a photonic crysta...
We present the results of recent investigations into the fabrication and characterization of high-Q,...
A small depression is created in a straight optical fiber taper to form a local probe suitable for s...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
A two-dimensional photonic crystal microcavity design supporting a wavelength-scale volume resonant ...
We propose two-dimensional photonic-crystal-embedded microcavities. Numerical simulations of wavegui...
Abstract—We review a novel method for characterizing both the spectral and spatial properties of res...
We review a novel method for characterizing both the spectral and spatial properties of resonant cav...
Using an optical fiber taper that simultaneously probes the spectral and spatial properties of reson...
A two-dimensional photonic crystal semiconductor microcavity with a quality factor Q ~ 40,000 and a ...
The demonstration of an optical fiber based probe for efficiently exciting the waveguide modes of hi...
Using a micromanipulation technique, a planar photonic crystal nanocavity made from a thin semicondu...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Optical resonators are structures that allow light to circulate and store energy for a duration of t...
We discuss experimental studies of the interaction between a nanoscopic object and a photonic crysta...
We present the results of recent investigations into the fabrication and characterization of high-Q,...
A small depression is created in a straight optical fiber taper to form a local probe suitable for s...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
A two-dimensional photonic crystal microcavity design supporting a wavelength-scale volume resonant ...
We propose two-dimensional photonic-crystal-embedded microcavities. Numerical simulations of wavegui...