The identification of a complete three-dimensional (3D) photonic band gap in real crystals typically employs theoretical or numerical models that invoke idealized crystal structures. Such an approach is prone to false positives (gap wrongly assigned) or false negatives (gap missed). Therefore, we propose a purely experimental probe of the 3D photonic band gap that pertains to any class of photonic crystals. We collect reflectivity spectra with a large aperture on exemplary 3D inverse woodpile structures that consist of two perpendicular nanopore arrays etched in silicon. We observe intense reflectivity peaks (R>90%) typical of high-quality crystals with broad stopbands. A resulting parametric plot of s-polarized versus p-polarized stopband ...
ii We experimentally study light propagation in novel two-dimensional and three-dimensional macropor...
The search for a photonic crystal to confine optical waves in all three dimensions (3D) has proven t...
The study of photonic crystals bears a striking resemblance to the study of conventional atomic crys...
The identification of a complete three-dimensional (3D) photonic band gap in real crystals typically...
There is a wide interest in three-dimensional (3D) photonic crystals that radically control the spon...
We have studied the reflectivity of CMOS-compatible three-dimensional silicon inverse woodpile photo...
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...
The confinement of light in three dimensions (3D) is an ongoing pursuit in Nanophotonics, since it a...
A three-dimensional (3D) photonic band gap crystal is an ideal tool to completely inhibit the local ...
We study numerically the confinement of light in a three-dimensional (3D) photonic crystal cavity in...
Three-dimensional photonic crystals based on macroporous silicon are fabricated by photoelectrochemi...
The confinement of light to a tiny volume is an important drive in nanophotonics. Notable applicatio...
<p>The objective of this dissertation work is to examine light localization in semiconductors provid...
This paper is Chapter 8 of the book "Light Localisation and Lasing: Random and Pseudorandom Photonic...
ii We experimentally study light propagation in novel two-dimensional and three-dimensional macropor...
The search for a photonic crystal to confine optical waves in all three dimensions (3D) has proven t...
The study of photonic crystals bears a striking resemblance to the study of conventional atomic crys...
The identification of a complete three-dimensional (3D) photonic band gap in real crystals typically...
There is a wide interest in three-dimensional (3D) photonic crystals that radically control the spon...
We have studied the reflectivity of CMOS-compatible three-dimensional silicon inverse woodpile photo...
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...
The confinement of light in three dimensions (3D) is an ongoing pursuit in Nanophotonics, since it a...
A three-dimensional (3D) photonic band gap crystal is an ideal tool to completely inhibit the local ...
We study numerically the confinement of light in a three-dimensional (3D) photonic crystal cavity in...
Three-dimensional photonic crystals based on macroporous silicon are fabricated by photoelectrochemi...
The confinement of light to a tiny volume is an important drive in nanophotonics. Notable applicatio...
<p>The objective of this dissertation work is to examine light localization in semiconductors provid...
This paper is Chapter 8 of the book "Light Localisation and Lasing: Random and Pseudorandom Photonic...
ii We experimentally study light propagation in novel two-dimensional and three-dimensional macropor...
The search for a photonic crystal to confine optical waves in all three dimensions (3D) has proven t...
The study of photonic crystals bears a striking resemblance to the study of conventional atomic crys...