A gain-integrated silicon photonic carrier with SOA-array for scalable

We built a 4-channel photonic carrier with input/output SiN waveguides and a flip-chip-attached SOA array, incorporating end-to-end reflection-management and mode-matching. All channels

Silicon photonics

Silicon photonic devices can be made using existing semiconductor fabrication techniques, and because silicon is already used as the substrate for most

O-band Silicon Photonics 8×8 Arrayed Waveguide Grating Router (AWGR

We present an 8×8 silicon photonics AWGR with 10 nm channel spacing for O-band cyclic-routing operation. Successful transmission at 25 Gb/s is demonstrated for all 8×8 AWGR channel

Ultra-Compact Silicon Photonic 512 × 512 25 GHz Arrayed Waveguide

This paper discusses design, fabrication, and characterization of a 512 × 512 arrayed waveguide grating router (AWGR) with a channel spacing of 25 GHz. The dimensions of the AWGR is 16 mm × 11 mm

Silicon Photonic Carrier-Assisted Differential Detection Receiver With

Coherent detection is advantageous in achieving high electrical spectral efficiency (ESE) relative to direct detection (DD), due to its capability of field recovery. However, the stringent requirement on

Five-Port Optical Router Based on Silicon Microring Optical Switches

We demonstrate a five-port optical router composed of eight silicon microring optical switches tuned by thermo-optic effect. The optical signal-to-noise ratio of the device on the tested

Ultra-Compact Silicon Photonic 512 × 512 25 GHz Arrayed Waveguide

This paper discusses design, fabrication, and characterization of a 512 × 512 arrayed waveguide grating router (AWGR) with a channel spacing of 25 GHz. The dimensions of the AWGR

Silicon photonics

Silicon photonics is the study and application of photonic systems which use silicon as an optical medium. The silicon is usually patterned with sub

Design of Micro-ring Resonator Based 4 × 4 Optical Router for Photonic

A 4 × 4 optical router which is composed of only four micro-ring resonator based switching elements is designed without any need of optoelectronic conversion for use in integrated optical

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