We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulator platform based on the mode-coupling mechanism. The PSR consists of a silicon wire waveguide coupled to a taper-etched waveguide. Compared to previously reported PSRs based on directional couplers which are sensitive to fabrication variations, the partially etched taper structure can compensate for fabrication inaccuracies. In addition, the taper-etched geometry breaks both the horizontal and vertical symmetries of the waveguide, introducing an additional degree of design freedom to accommodate different upper cladding layers. The proposed PSR can be readily integrated in a planar waveguide circuit using e.g. SiO2 cladding, making it compati...
Sinusoidal anti-coupling (AC) symmetric waveguides provide a means to design dense waveguide arrays ...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...
Abstract — We present the design of a highly efficient polar-ization splitter-rotator that operates ...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
We propose a novel method to implement a compact and fabrication-tolerant polarization splitter and ...
We propose a novel method to implement a compact and fabrication-tolerant polarization splitter and ...
The standard silicon photonic platforms provide three-step silicon etching, i.e., 220 nm for full et...
A compact polarization splitter-rotator based on a silicon-on-insulator rib asymmetrical directional...
A polarization rotator in silicon-on-insulator technology based on breaking the symmetry of the wave...
A fabrication-tolerant mid-infrared silicon polarization splitter and rotator (PSR) based on a parti...
We propose and experimentally demonstrate an ultra-compact and highly efficient polarization splitte...
We experimentally realize a compact wideband polarization splitter and rotator (PSR) with CMOS compa...
A polarization rotator in silicon-on-insulator technology based on breaking the symmetry of the wave...
A novel on-chip ultra-broadband polarization splitter-rotator (PSR) based on an inverse asymmetrical...
Sinusoidal anti-coupling (AC) symmetric waveguides provide a means to design dense waveguide arrays ...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...
Abstract — We present the design of a highly efficient polar-ization splitter-rotator that operates ...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
We propose a novel method to implement a compact and fabrication-tolerant polarization splitter and ...
We propose a novel method to implement a compact and fabrication-tolerant polarization splitter and ...
The standard silicon photonic platforms provide three-step silicon etching, i.e., 220 nm for full et...
A compact polarization splitter-rotator based on a silicon-on-insulator rib asymmetrical directional...
A polarization rotator in silicon-on-insulator technology based on breaking the symmetry of the wave...
A fabrication-tolerant mid-infrared silicon polarization splitter and rotator (PSR) based on a parti...
We propose and experimentally demonstrate an ultra-compact and highly efficient polarization splitte...
We experimentally realize a compact wideband polarization splitter and rotator (PSR) with CMOS compa...
A polarization rotator in silicon-on-insulator technology based on breaking the symmetry of the wave...
A novel on-chip ultra-broadband polarization splitter-rotator (PSR) based on an inverse asymmetrical...
Sinusoidal anti-coupling (AC) symmetric waveguides provide a means to design dense waveguide arrays ...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...
Abstract — We present the design of a highly efficient polar-ization splitter-rotator that operates ...