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- W2015261165 abstract "The nonlinear optics of Si photonic wires is discussed. The distinctive features ofthese waveguides are that they have extremely large third-order susceptibility χ(3) and dispersive properties. The strong dispersion and largethird-order nonlinearity in Si photonic wires cause the linear and nonlinear opticalphysics in these guides to be intimately linked. By carefully choosing the waveguidedimensions, both linear and nonlinear optical properties of Si wires can beengineered. We review the fundamental optical physics and emerging applications forthese Si wires. In many cases, the relatively low threshold powers for nonlinearoptical effects in these wires make them potential candidates for functional on-chipnonlinear optical devices of just a few millimeters in length; conversely, theabsence of nonlinear optical impairment is important for the use of Si wires inon-chip interconnects. In addition, the characteristic length scales of linear andnonlinear optical effects in Si wires are markedly different from those in commonlyused optical guiding systems, such as optical fibers or photonic crystal fibers, andtherefore guiding structures based on Si wires represent ideal optical media forinvestigating new and intriguing physical phenomena." @default.
- W2015261165 created "2016-06-24" @default.
- W2015261165 creator A5004143044 @default.
- W2015261165 creator A5005754533 @default.
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- W2015261165 creator A5075432034 @default.
- W2015261165 date "2009-01-01" @default.
- W2015261165 modified "2023-10-16" @default.
- W2015261165 title "Engineering nonlinearities in nanoscale optical systems: physics and applications in dispersion-engineered silicon nanophotonic wires" @default.
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