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Performance Enhanced Butt Coupling for Effective Interconnection Between Fiber and Silicon Nanowire

机译:性能增强的对接耦合,用于光纤和硅纳米线之间的有效互连

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摘要

A performance enhanced butt coupling structure incorporating a vertically and laterally tapered SiON polymer core on silicon (Si) to tunnel and widen propagating optical modes of adiabatic taper is proposed. The proposed structure can effectively overcome the strong back reflections caused at the interface between fiber and Si nanowire to enable higher coupling efficiency. The placement of the SiON polymer core is chosen to restrict the passage of light through the bottom cladding to avoid unnecessary leakage. The performance of the structure is characterized for distinct features, including taping length, coupling efficiency, and coupling bandwidth for both single as well as cacaded configurations, compared with the state-of-the-art grating coupler. It is found that, with the right set of design specifications, butt couplers can outperform grating couplers in both coupling efficiency and bandwidth, although grating couplers are considered friendlier for wafer-level testing.
机译:提出了一种性能增强的对接耦合结构,该结构在硅(Si)上结合了垂直和横向渐缩的SiON聚合物核,以隧穿和加宽绝热锥的传播光学模。所提出的结构可以有效地克服在光纤和Si纳米线之间的界面处引起的强背反射,从而实现更高的耦合效率。选择SiON聚合物芯的位置以限制光线穿过底部覆层,以避免不必要的泄漏。与最先进的光栅耦合器相比,该结构的性能具有独特的特征,包括单独结构和层叠结构的包带长度,耦合效率和耦合带宽。我们发现,使用正确的设计规范集,对接耦合器在耦合效率和带宽方面都可以胜过光栅耦合器,尽管在晶圆级测试中光栅耦合器更为友好。

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