Author_Institution :
Nat. Res. Center for Photonic Integration Technol., INHA Univ., Incheon, South Korea
Abstract :
This paper presents an overview of our work on the theory, design, fabrication, and integration of micro/nano-scale optical devices as applicable for all-optical generic and application-specific VLSI photonic integration. The micro/nano-optical devices are designed to perform the functions of collecting, storing, transporting, processing, switching, routing, and distributing optical signals on chips. The integrated optical components include micro/nano-scale optical waveguides, switches, modulators, sensors, directional couplers, multi-mode interference devices, micro-ring resonators, photonic crystal devices, and plasmonic devices made of polymer, silicon and semiconductor materials. The paper discusses scientific and engineering issues of miniaturizing and integrating micro/nano-scale photonic devices of small and ultra-small dimensions to a very large scale integration density as applicable for specific functions. Scientific and engineering issues are examined and examples of progresses are presented.
Keywords :
VLSI; integrated optics; micro-optics; microcavities; nanophotonics; optical design techniques; optical directional couplers; optical fabrication; optical modulation; optical resonators; optical sensors; optical switches; optical waveguides; photonic crystals; plasmonics; VLSI photonics; chips; integrated optical components; microring resonators; microscale high-density photonic integration; multimode interference devices; nanoscale high-density photonic integration; optical device design; optical device fabrication; optical device integration; optical directional couplers; optical modulators; optical sensors; optical signal collecting; optical signal distributing; optical signal processing; optical signal routing; optical signal storing; optical signal switching; optical signal transporting; optical switches; optical waveguides; photonic crystal devices; plasmonic devices; polymer; semiconductor materials; silicon; Nanoscale devices; Optical design; Optical device fabrication; Optical devices; Optical modulation; Optical polymers; Optical resonators; Optical sensors; Photonics; Very large scale integration; microphotonics; nanophotonics; photonic circuits; photonic integration;