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Modeling of evanescent coupling between two parallel optical nanowires

机译:两个平行光学纳米线之间的van逝耦合建模

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摘要

Evanescent coupling between two parallel nanowires is investigated using the finite-difference time-domain method. Silica, tellurite, and silicon nanowires are used as typical materials in the simulation. Compared with weakly coupled waveguides, strongly coupled nanowires show much smaller transfer lengths without sacrificing high coupling efficiencies, suggesting possibilities for developing highly compact evanescent-coupling-based nanowire photonic devices, as well as for achieving high-efficiency interconnection between nanowires and external optical systems. Meanwhile, the polarization-dependent coupling properties, the considerably high minimum coupling efficiency, and the supermode-cutoff-like behavior are also observed. Evanescent coupling properties of strongly coupled nanowires demonstrated may provide valuable references for practical applications of optical nanowires.
机译:使用时域有限差分法研究了两条平行纳米线之间的逝耦合。二氧化硅,碲酸盐和硅纳米线被用作模拟中的典型材料。与弱耦合波导相比,强耦合纳米线在不牺牲高耦合效率的情况下显示出更短的传输长度,这为开发高度紧凑的基于van逝耦合的纳米线光子器件以及实现纳米线与外部光学系统之间的高效互连提供了可能性。同时,还观察到偏振相关的耦合特性,相当高的最小耦合效率以及超模截止现象。所展示的强耦合纳米线的van逝耦合特性可以为光学纳米线的实际应用提供有价值的参考。

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