We present the first unique design of a polarization-independent dual-wavelength splitter for wavelengths around 1.3 μm and 1.55 μm that is potentially of great interest to passive optical network (PON) applications. The filter design is simple compared with the other architectures and is based on ridge-type lateral directional couplers that can be readily integrated with other planar waveguide devices. Two design examples, based on InP/InGaAsP and Si/SiGe waveguides, are given. This polarization-independent wavelength splitting is achieved by exploiting the polarization dependence of the waveguides to produce coupling lengths that are sensitive to polarization and wavelength. We show that, to split the wavelengths without splitting the pol...
A new design for a passive polarisation splitter is presented. The device consists of a di-rectional...
We observe that the cascaded typical Y junctions will introduce unwanted periodic fringes over the s...
International audienceWe consider wavelength-selective splitting of radiation using directional coup...
We present the first unique design of a polarization-independent dual-wavelength splitter for wavele...
We demonstrate a novel polarization splitter based on a two-dimensional grating etched in a silicon-...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...
Waveguide birefringence almost always exists, except for cases where the two orthogonally polarized ...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
A novel polarization splitter based on a 2-D grating coupler in a SOI waveguide is demonstrated. The...
Cataloged from PDF version of article.A compact directional coupler-based polarization splitter is d...
We present the implementation of a novel wavelength independent polarization splitter on a silicon-o...
A novel on-chip ultra-broadband polarization splitter-rotator (PSR) based on an inverse asymmetrical...
A compact polarization splitter-rotator based on a silicon-on-insulator rib asymmetrical directional...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
Sinusoidal anti-coupling (AC) symmetric waveguides provide a means to design dense waveguide arrays ...
A new design for a passive polarisation splitter is presented. The device consists of a di-rectional...
We observe that the cascaded typical Y junctions will introduce unwanted periodic fringes over the s...
International audienceWe consider wavelength-selective splitting of radiation using directional coup...
We present the first unique design of a polarization-independent dual-wavelength splitter for wavele...
We demonstrate a novel polarization splitter based on a two-dimensional grating etched in a silicon-...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...
Waveguide birefringence almost always exists, except for cases where the two orthogonally polarized ...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
A novel polarization splitter based on a 2-D grating coupler in a SOI waveguide is demonstrated. The...
Cataloged from PDF version of article.A compact directional coupler-based polarization splitter is d...
We present the implementation of a novel wavelength independent polarization splitter on a silicon-o...
A novel on-chip ultra-broadband polarization splitter-rotator (PSR) based on an inverse asymmetrical...
A compact polarization splitter-rotator based on a silicon-on-insulator rib asymmetrical directional...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
Sinusoidal anti-coupling (AC) symmetric waveguides provide a means to design dense waveguide arrays ...
A new design for a passive polarisation splitter is presented. The device consists of a di-rectional...
We observe that the cascaded typical Y junctions will introduce unwanted periodic fringes over the s...
International audienceWe consider wavelength-selective splitting of radiation using directional coup...