We have studied the reflectivity of CMOS-compatible three-dimensional silicon inverse woodpile photonic crystals at near-infrared frequencies. Polarization-resolved reflectivity spectra were obtained from two orthogonal crystal surfaces using an objective with a high numerical aperture. The spectra reveal broad peaks with maximum reflectivity of 67% that are independent of the spatial position on the crystals. The spectrally overlapping reflectivity peaks for all directions and polarizations form the signature of a broad photonic band gap with a relative bandwidth up to 16%. This signature is supported with stop gaps in plane-wave band-structure calculations and with the frequency region of the expected band gap
We report the characterization of two-dimensional silicon photonic crystals using angular-dependent ...
Sharp resonance features are observed in the polarized reflectivity spectra of semiconductor photoni...
Sharp resonance features are observed in the polarized reflectivity spectra of semiconductor photoni...
The identification of a complete three-dimensional (3D) photonic band gap in real crystals typically...
The identification of a complete three-dimensional (3D) photonic band gap in real crystals typically...
ii We experimentally study light propagation in novel two-dimensional and three-dimensional macropor...
By using direct laser writing into a novel commercially available photoresist and a silicon-double-i...
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...
A two-dimensional silicon photonic crystal (PhC), which is designed to provide a modified dispersion...
Photonic Crystals are materials with a spatial periodic variation of the refract...
A two-dimensional silicon photonic crystal (PhC), which is designed to provide a modified dispersion...
Photonic Crystals are materials with a spatial periodic variation of the refract...
In this work, we report the realization of a series of silicon 3D photonic crystals operating in the...
We describe the lithographic control over the spectral response of three-dimensional photonic crysta...
We report the characterization of two-dimensional silicon photonic crystals using angular-dependent ...
Sharp resonance features are observed in the polarized reflectivity spectra of semiconductor photoni...
Sharp resonance features are observed in the polarized reflectivity spectra of semiconductor photoni...
The identification of a complete three-dimensional (3D) photonic band gap in real crystals typically...
The identification of a complete three-dimensional (3D) photonic band gap in real crystals typically...
ii We experimentally study light propagation in novel two-dimensional and three-dimensional macropor...
By using direct laser writing into a novel commercially available photoresist and a silicon-double-i...
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...
A two-dimensional silicon photonic crystal (PhC), which is designed to provide a modified dispersion...
Photonic Crystals are materials with a spatial periodic variation of the refract...
A two-dimensional silicon photonic crystal (PhC), which is designed to provide a modified dispersion...
Photonic Crystals are materials with a spatial periodic variation of the refract...
In this work, we report the realization of a series of silicon 3D photonic crystals operating in the...
We describe the lithographic control over the spectral response of three-dimensional photonic crysta...
We report the characterization of two-dimensional silicon photonic crystals using angular-dependent ...
Sharp resonance features are observed in the polarized reflectivity spectra of semiconductor photoni...
Sharp resonance features are observed in the polarized reflectivity spectra of semiconductor photoni...