We experimentally realize a compact wideband polarization splitter and rotator (PSR) with CMOS compatibility. The fabricated PSR is then tested by utilizing a fabrication-tolerant TE-pass on-chip polarizer we propose to practically solve the issue of accurately aligning the polarizations in fiber and modes on chip. Both of these polarization handling devices take the advantage of bend structure that confines TE mode better than TM mode. The fabricated PSR has a high TM-TE and TE-TE mode conversion efficiency of -0.4 dB and -0.2 dB at 1310 nm, while the extinction ratio is better than 18 dB and the broad bandwidth exceeds 100 nm.Department of Electronic and Information Engineerin
Abstract — We present the design of a highly efficient polar-ization splitter-rotator that operates ...
A fabrication-tolerant mid-infrared silicon polarization splitter and rotator (PSR) based on a parti...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...
We propose a compact highly-efficient CMOS-compatible polarization splitter and rotator (PSR) with a...
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 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 and experimentally demonstrate an ultra-compact and highly efficient polarization splitte...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
Polarization diversity scheme offers a good solution to polarization independent photonic circuit. P...
A novel on-chip ultra-broadband polarization splitter-rotator (PSR) based on an inverse asymmetrical...
The standard silicon photonic platforms provide three-step silicon etching, i.e., 220 nm for full et...
Monolithically integrated polarization beam splitters (PBSs) are needed to reduce the form-factor an...
A compact polarization splitter-rotator based on a silicon-on-insulator rib asymmetrical directional...
Abstract — We present the design of a highly efficient polar-ization splitter-rotator that operates ...
A fabrication-tolerant mid-infrared silicon polarization splitter and rotator (PSR) based on a parti...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...
We propose a compact highly-efficient CMOS-compatible polarization splitter and rotator (PSR) with a...
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 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 and experimentally demonstrate an ultra-compact and highly efficient polarization splitte...
We propose a fabrication tolerant polarization splitter and rotator (PSR) on the silicon-on-insulato...
Polarization diversity scheme offers a good solution to polarization independent photonic circuit. P...
A novel on-chip ultra-broadband polarization splitter-rotator (PSR) based on an inverse asymmetrical...
The standard silicon photonic platforms provide three-step silicon etching, i.e., 220 nm for full et...
Monolithically integrated polarization beam splitters (PBSs) are needed to reduce the form-factor an...
A compact polarization splitter-rotator based on a silicon-on-insulator rib asymmetrical directional...
Abstract — We present the design of a highly efficient polar-ization splitter-rotator that operates ...
A fabrication-tolerant mid-infrared silicon polarization splitter and rotator (PSR) based on a parti...
A compact directional coupler-based polarization splitter is designed and realized using silicon-on-...