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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Optical interleaver based on directional coupler in a 2D photonic crystal slab with triangular lattice of air holes
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Optical interleaver based on directional coupler in a 2D photonic crystal slab with triangular lattice of air holes

机译:具有气孔三角晶格的二维光子晶体平板中基于定向耦合器的光交织器

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摘要

A small-size optical interleaver based on directional coupler in a 2D photonic crystal slab with triangular lattice of air holes is designed and theoretically simulated using plane wave expansion and finite-difference time-domain method. The interleaver is formed by two parallel and identical photonic crystal slab waveguides which are separated by three rows of air holes. The coupling region is designed below the light line to avoid vertical radiation. The simulated results show that the coupling coefficient is increased and the final length of the interleaver is decreased by enlarging the radius of the middle row of air holes. The transmission properties are analyzed after the interleaver's structure is optimized, and around 100 GHz channel spacing can be got when the length of the interleaver is chosen as 40.5 (mu)m.
机译:利用平面波展开和时域有限差分法,设计并理论模拟了二维二维光子晶体平板中基于定向耦合器的小型光交织器。交织器由两个平行且相同的光子晶体平板波导形成,它们被三排气孔隔开。耦合区域设计在光线下方,以避免垂直辐射。仿真结果表明,通过增大气孔中间排的半径,可以增加耦合系数,减小交织器的最终长度。在优化交织器的结构之后分析传输特性,并且当将交织器的长度选择为40.5μm时,可以获得大约100 GHz的信道间隔。

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