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首页> 外文期刊>Japanese Journal of Applied Physics. Part 2, Letters >Significantly Enhanced Coupling Efficiency in 2D Photonic Crystal Waveguides by Using Cabin-Side-Like Tapered Structures at Two Terminals
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Significantly Enhanced Coupling Efficiency in 2D Photonic Crystal Waveguides by Using Cabin-Side-Like Tapered Structures at Two Terminals

机译:通过在两个端子处使用类似机舱侧的锥形结构,可以显着提高二维光子晶体波导的耦合效率

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摘要

We report that using a cabin-side-like tapered structure, containing only one pair of defects, can markedly enhance the coupling efficiency at the entrance and exit terminals of planar photonic crystal waveguides (PPCWGs). The PPCWGs are composed of circular dielectric rods set in 2D triangular lattices. By means of simulations, we find that the transmission efficiency reaches up to 90%. Moreover, the suggested structures possess other advantages, such as the shortness of the taper, the ease of fabrication, and its low cost. It is anticipated that the proposed structures might be feasibly be applicable to the integrated optical circuits compatibility.
机译:我们报告说,使用仅包含一对缺陷的类似机舱侧的锥形结构,可以显着提高平面光子晶体波导(PPCWGs)的入口和出口端子的耦合效率。 PPCWG由设置在2D三角形格子中的圆形电介质棒组成。通过仿真,我们发现传输效率高达90%。此外,所提出的结构还具有其他优点,例如锥度短,制造容易并且其成本低。可以预期,所提出的结构可能可行地适用于集成光学电路的兼容性。

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