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Highly Compact Circulators in Square-Lattice Photonic Crystal Waveguides

机译:方格光子晶体波导中的高度紧凑的循环器

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摘要

We propose, demonstrate and investigate highly compact circulators with ultra-low insertion loss in square-lattice- square-rod-photonic-crystal waveguides. Only a single magneto- optical square rod is required to be inserted into the cross center of waveguides, making the structure very compact and ultra efficient. The square rods around the center defect rod are replaced by several right-angled-triangle rods, reducing the insertion loss further and promoting the isolations as well. By choosing a linear-dispersion region and considering the mode patterns in the square magneto-optical rod, the operating mechanism of the circulator is analyzed. By applying the finite-element method together with the Nelder-Mead optimization method, an extremely low insertion loss of 0.02 dB for the transmitted wave and ultra high isolation of 46 dB∼48 dB for the isolated port are obtained. The idea presented can be applied to build circulators in different wavebands, e.g., microwave or Tera-Hertz.
机译:我们提出,论证和研究具有超低插入损耗的高密度循环器,该超低插入器在方格-方杆-光子晶体波导中具有很高的插入损耗。只需将一根磁光方棒插入波导的交叉中心即可,从而使结构非常紧凑且效率很高。中心缺陷棒周围的方形棒被数个直角三角形棒代替,从而进一步减少了插入损耗并促进了隔离。通过选择线性色散区域并考虑方形磁光棒中的模式模式,分析了环行器的工作机理。通过将有限元方法与Nelder-Mead优化方法一起使用,可以获得传输波的0.02 dB的极低插入损耗和隔离端口的46 dB〜48 dB的超高隔离度。提出的想法可以应用于构建不同波段的环行器,例如微波或Tera-Hertz。

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