Matches in SemOpenAlex for { <https://semopenalex.org/work/W2016284225> ?p ?o ?g. }
Showing items 1 to 68 of
68
with 100 items per page.
- W2016284225 abstract "This paper presents an overview of the collective original work that we conduct at the OPERA National Research Center for VLSI photonic integration technology on the theory, design, fabrication, and integration of micro/nano-scale optical waveguides, photonic devices, optical circuits, and networks for applications in newly-conceived optical micro/nano-systems that we call optical printed circuit boards (O-PCBs) and VLSI photonic integrated circuits(VLSI-PICs). The is to realize O-PCBs and VLSI photonic circuits (AS-PICs) and networks of generic and application-specific functions that are compact, high-speed, intelligent, light-weight, low-energy and environmentally friendly, low-cost, and high-volume applications to complement or surpass the capabilities of electrical micro/nano-systems. The O-PCBs and VLSI-PICs process optical signals through optical wires, circuits, and networks in micro/nano-scale. They consist of 2-dimensional planar arrays of optical wires, circuits, devices, and networks of micro/nano-scale to perform the functions of sensing, storing, transporting, processing, switching, routing and distributing optical signals on flat modular boards or substrates. The integrated optical components include micro/nano-scale light sources, waveguides, detectors, switches, modulators, sensors, directional couplers, multi-mode interference devices, AWGs, ring-resonators, photonic crystal devices, plasmonic devices, and quantum devices, made of polymer, silicon and other semiconductor materials. Some molecular devices are also considered. This paper discusses scientific and technological issues, challenges, and approaches concerning the miniaturization, interconnection and integration of micro/nano-scale photonic devices, circuits, and networks leading to ultra-small and very large scale integration and discusses their use for datacom, telecom, transportation, aero/space/avionic and bio/sensor/environmental systems. Scaling rules for the miniaturization and integration of the micro/nano-photonic systems will be discussed in comparison with those of the micro/nano-electronic systems. New physics, visions and challenges of the optical micro/nano-optical networks and systems will be discussed along with the historical perspectives of the electrical technology. Recent progresses and examples will be presented." @default.
- W2016284225 created "2016-06-24" @default.
- W2016284225 creator A5028921102 @default.
- W2016284225 date "2007-07-01" @default.
- W2016284225 modified "2023-09-25" @default.
- W2016284225 title "Optical Printed Circuit Board (O-PCB) as a Platform for VLSI Micro/Nano-Photonic Circuits and Networks" @default.
- W2016284225 doi "https://doi.org/10.1109/icton.2007.4296074" @default.
- W2016284225 hasPublicationYear "2007" @default.
- W2016284225 type Work @default.
- W2016284225 sameAs 2016284225 @default.
- W2016284225 citedByCount "5" @default.
- W2016284225 crossrefType "proceedings-article" @default.
- W2016284225 hasAuthorship W2016284225A5028921102 @default.
- W2016284225 hasConcept C101336846 @default.
- W2016284225 hasConcept C116141437 @default.
- W2016284225 hasConcept C119423029 @default.
- W2016284225 hasConcept C119599485 @default.
- W2016284225 hasConcept C120793396 @default.
- W2016284225 hasConcept C127413603 @default.
- W2016284225 hasConcept C134146338 @default.
- W2016284225 hasConcept C14580979 @default.
- W2016284225 hasConcept C171250308 @default.
- W2016284225 hasConcept C192562407 @default.
- W2016284225 hasConcept C206521022 @default.
- W2016284225 hasConcept C20788544 @default.
- W2016284225 hasConcept C22799297 @default.
- W2016284225 hasConcept C24326235 @default.
- W2016284225 hasConcept C41008148 @default.
- W2016284225 hasConcept C49040817 @default.
- W2016284225 hasConcept C530198007 @default.
- W2016284225 hasConcept C57528182 @default.
- W2016284225 hasConcept C74172769 @default.
- W2016284225 hasConceptScore W2016284225C101336846 @default.
- W2016284225 hasConceptScore W2016284225C116141437 @default.
- W2016284225 hasConceptScore W2016284225C119423029 @default.
- W2016284225 hasConceptScore W2016284225C119599485 @default.
- W2016284225 hasConceptScore W2016284225C120793396 @default.
- W2016284225 hasConceptScore W2016284225C127413603 @default.
- W2016284225 hasConceptScore W2016284225C134146338 @default.
- W2016284225 hasConceptScore W2016284225C14580979 @default.
- W2016284225 hasConceptScore W2016284225C171250308 @default.
- W2016284225 hasConceptScore W2016284225C192562407 @default.
- W2016284225 hasConceptScore W2016284225C206521022 @default.
- W2016284225 hasConceptScore W2016284225C20788544 @default.
- W2016284225 hasConceptScore W2016284225C22799297 @default.
- W2016284225 hasConceptScore W2016284225C24326235 @default.
- W2016284225 hasConceptScore W2016284225C41008148 @default.
- W2016284225 hasConceptScore W2016284225C49040817 @default.
- W2016284225 hasConceptScore W2016284225C530198007 @default.
- W2016284225 hasConceptScore W2016284225C57528182 @default.
- W2016284225 hasConceptScore W2016284225C74172769 @default.
- W2016284225 hasLocation W20162842251 @default.
- W2016284225 hasOpenAccess W2016284225 @default.
- W2016284225 hasPrimaryLocation W20162842251 @default.
- W2016284225 hasRelatedWork W1965700917 @default.
- W2016284225 hasRelatedWork W1977805133 @default.
- W2016284225 hasRelatedWork W1996346999 @default.
- W2016284225 hasRelatedWork W2007679696 @default.
- W2016284225 hasRelatedWork W2011872402 @default.
- W2016284225 hasRelatedWork W2013276565 @default.
- W2016284225 hasRelatedWork W2016284225 @default.
- W2016284225 hasRelatedWork W2036611633 @default.
- W2016284225 hasRelatedWork W2046669231 @default.
- W2016284225 hasRelatedWork W2084275386 @default.
- W2016284225 isParatext "false" @default.
- W2016284225 isRetracted "false" @default.
- W2016284225 magId "2016284225" @default.
- W2016284225 workType "article" @default.