In this paper, we present a design of a three-dimensional (3D) photonic crystal (PhC) nanocavity based on an optimized woodpile structure. By carefully choosing the position of the defect at the lattice center, we can create a cavity with high symmetry which supports well confined Gaussian-like cavity modes similar to those seen in a Fabry Perot laser resonator. We could also tune the resonant frequency of the cavity and manually choose the cavity mode order by adjusting the size of the defect at a chosen position
We report the realization of a silicon three-dimensional photonic crystal nanocavity containing self...
The confinement of light to a tiny volume is an important drive in nanophotonics. Notable applicatio...
Tuneable microcavities embedded in woodpile photonic crystals were generated by femtosecond-laser di...
In this paper, we present a design of a three-dimensional (3D) photonic crystal (PhC) nanocavity bas...
In this paper, we present a design of a three-dimensional (3D) photonic crystal (PhC) nanocavity bas...
We report the optimisation of optical properties of single defects in three-dimensional (3D) face-ce...
We theoretically investigate the design of cavities in a three-dimensional (3D) inverse woodpile pho...
We theoretically investigate the design of cavities in a three-dimensional (3D) inverse woodpile pho...
We report the optimisation of optical properties of single defects in three-dimensional (3D) face-ce...
<p>The objective of this dissertation work is to examine light localization in semiconductors provid...
The fabrication of three-dimensional inverse woodpile photonic crystals ishighly desirable because o...
The symmetry of a Fabry-Perot-like planar cavity embedded within a three-dimensional (3D) woodpile p...
By creating different types of defects in the photonic crystal lattice, various nanophotonics compon...
Woodpile-type photonic crystals consisting of stacks of submicron-size void channels generated in a ...
We report the realization of a silicon three-dimensional photonic crystal nanocavity containing self...
We report the realization of a silicon three-dimensional photonic crystal nanocavity containing self...
The confinement of light to a tiny volume is an important drive in nanophotonics. Notable applicatio...
Tuneable microcavities embedded in woodpile photonic crystals were generated by femtosecond-laser di...
In this paper, we present a design of a three-dimensional (3D) photonic crystal (PhC) nanocavity bas...
In this paper, we present a design of a three-dimensional (3D) photonic crystal (PhC) nanocavity bas...
We report the optimisation of optical properties of single defects in three-dimensional (3D) face-ce...
We theoretically investigate the design of cavities in a three-dimensional (3D) inverse woodpile pho...
We theoretically investigate the design of cavities in a three-dimensional (3D) inverse woodpile pho...
We report the optimisation of optical properties of single defects in three-dimensional (3D) face-ce...
<p>The objective of this dissertation work is to examine light localization in semiconductors provid...
The fabrication of three-dimensional inverse woodpile photonic crystals ishighly desirable because o...
The symmetry of a Fabry-Perot-like planar cavity embedded within a three-dimensional (3D) woodpile p...
By creating different types of defects in the photonic crystal lattice, various nanophotonics compon...
Woodpile-type photonic crystals consisting of stacks of submicron-size void channels generated in a ...
We report the realization of a silicon three-dimensional photonic crystal nanocavity containing self...
We report the realization of a silicon three-dimensional photonic crystal nanocavity containing self...
The confinement of light to a tiny volume is an important drive in nanophotonics. Notable applicatio...
Tuneable microcavities embedded in woodpile photonic crystals were generated by femtosecond-laser di...