Coupled-mode analysis of group-index dependent four-wave-mixing efficiency in a 1-D silicon photonic crystal waveguide

Group IV Photonics(2013)

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摘要
Direct coupled-mode beam propagation analysis in the silicon-based one-dimensional photonic crystal waveguides (1D-PhCW) has been performed to explain the group-velocity-dependent enhanced four-wave-mixing (FWM) effect and to evaluate the sectional contribution of the 1D-PhCW part and its side-coupled strip waveguide parts for the FWM effect. The analyzed results indicate that the high group-index profile near the bandedge of the 1D-PhCWs provides a significantly enhanced FWM efficiency despite its high dispersion effect.
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coupled mode analysis,elemental semiconductors,multiwave mixing,optical dispersion,optical waveguides,photonic crystals,silicon,1d-phcw,fwm,si,band edge,direct coupled-mode beam propagation analysis,dispersion effect,group-index dependent four-wave-mixing,group-index profile,side-coupled strip waveguide,silicon-based one-dimensional photonic crystal waveguides
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