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Nanowire-assisted microcavity in a photonic crystal waveguide and the enabled high-efficiency optical frequency conversions

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摘要 We report an indium phosphide nanowire(NW)-induced cavity in a silicon planar photonic crystal(PPC)waveguide to improve the light–NW coupling.The integration of NW shifts the transmission band of the PPC waveguide into the mode gap of the bare waveguide,which gives rise to a microcavity located on the NW section.Resonant modes with𝑄factors exceeding 103 are obtained.Leveraging on the high density of the electric field in the microcavity,the light–NW interaction is enhanced strongly for efficient nonlinear frequency conversion.Second-harmonic generation and sum-frequency generation in the NW are realized with a continuous-wave pump laser in a power level of tens of microwatts,showing a cavity-enhancement factor of 112.The hybrid integration structure of NW-PPC waveguide and the self-formed microcavity not only opens a simple strategy to effectively enhance light–NW interactions,but also provides a compact platform to construct NW-based on-chip active devices.
出处 《Photonics Research》 SCIE EI CAS CSCD 2020年第11期1734-1741,共8页 光子学研究(英文版)
基金 Key Research and Development Program(2017YFA0303800) National Natural Science Foundation of China(11634010,61775183,61905196,91950119) Key Research and Development Program in Shaanxi Province of China(2017KJXX-12,2018JM1058) Fundamental Research Funds for the Central Universities(310201911cx032,3102019JC008) Aalto University Doctoral School,Walter Ahlstrom Foundation,Nokia Foundation,Academy of Finland(298297) Academy of Finland Flagship Program(320167,PREIN) Horizon 2020 Framework Programme(820423) European Research Council(834742).
关键词 WAVEGUIDE PUMP CRYSTAL
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