2018 European Conference on Optical Communication (ECOC).44th EUROPEAN CONFERENCE ON OPTICAL COMMUNICATION, Roma, Italy. 23-27 Sept. (2018). .-https://www.ecoc2018.org/Segmenting silicon waveguides at the subwavelength scale produce an equivalent homogenous material. The geometry of the waveguide segments provides precise control over modal confinement, effective index, dispersion and birefringence, thereby opening up new approaches to design devices with unprecedented performance. Indeed, with ever-improving lithographic technologies offering sub-100-nm patterning resolution in the silicon photonics platform, many practical devices based on subwavelength structures have been demonstrated in recent years. Subwavelength engineering has thus...
Silicon sub-wavelength structures have found widespread applications in devices ranging from fiber-t...
The engineering of subwavelength grating metamaterials has become an essential design strategy in si...
Recent advances in silicon photonics research at the National Research Council of Canada will be rev...
Segmenting silicon waveguides at the subwavelength scale produce an equivalent homogenous material. ...
Segmenting silicon waveguides at the subwavelength scale produce an equivalent homogenous material. ...
Segmenting silicon waveguides at the subwave-length scale produce an equivalent homogenous material....
Silicon photonics is playing a key role in areas as diverse as high-speed optical communications, ne...
Subwavelength grating metamaterials have become an integral design tool in silicon photonics. The li...
We report our advances in development of subwavelength engineered structures for integrated photonic...
We report our advances in development of subwavelength engineered waveguide structures. This unique ...
We report our advances in development of subwavelength engineered waveguide structures. This unique ...
We report our recent advances in development of subwavelength engineered dielectric metamaterial str...
We report our advances in development of subwavelength engineered structures for integrated photonic...
In the past decade, there has been tremendous progress in using subwavelength-scale nanostructures w...
Subwavelength engineering in silicon photonic integrated circuits is a powerful design tool that all...
Silicon sub-wavelength structures have found widespread applications in devices ranging from fiber-t...
The engineering of subwavelength grating metamaterials has become an essential design strategy in si...
Recent advances in silicon photonics research at the National Research Council of Canada will be rev...
Segmenting silicon waveguides at the subwavelength scale produce an equivalent homogenous material. ...
Segmenting silicon waveguides at the subwavelength scale produce an equivalent homogenous material. ...
Segmenting silicon waveguides at the subwave-length scale produce an equivalent homogenous material....
Silicon photonics is playing a key role in areas as diverse as high-speed optical communications, ne...
Subwavelength grating metamaterials have become an integral design tool in silicon photonics. The li...
We report our advances in development of subwavelength engineered structures for integrated photonic...
We report our advances in development of subwavelength engineered waveguide structures. This unique ...
We report our advances in development of subwavelength engineered waveguide structures. This unique ...
We report our recent advances in development of subwavelength engineered dielectric metamaterial str...
We report our advances in development of subwavelength engineered structures for integrated photonic...
In the past decade, there has been tremendous progress in using subwavelength-scale nanostructures w...
Subwavelength engineering in silicon photonic integrated circuits is a powerful design tool that all...
Silicon sub-wavelength structures have found widespread applications in devices ranging from fiber-t...
The engineering of subwavelength grating metamaterials has become an essential design strategy in si...
Recent advances in silicon photonics research at the National Research Council of Canada will be rev...