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Design of a Compact Polarization Splitter in Horizontal Multiple-Slotted Waveguide Structures

机译:水平多缝波导结构中紧凑型偏振分束器的设计

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摘要

A compact polarization splitter based on the directional coupler in horizontal multiple-slotted waveguide (HMSW) structures is proposed and designed by using a modified three-dimensional full-vectorial beam propagation method with perfectly matched layer absorbing boundary conditions. The results show that the birefringence of the HMSW is stronger than that of the single-slotted waveguide, leading to a reduction in length for the present device. Moreover, the HMSW can also enhance the optical confinement inside the slot regions. The coupling length of the directional coupler composed of two-parallel HMSWs as functions of the waveguide parameters are analyzed, and a compact device of 238.0 μm in length is achieved with the crosstalks of -27.9 and -35.6dB for quasi-transverse-electric and quasi-transverse-magnetic modes, respectively. In addition, the evolution of the injected field along the propagation distance through the polarization splitter is also demonstrated.
机译:提出并设计了一种基于定向耦合器的紧凑型偏振分束器,该结构采用改进的三维全矢量光束传输方法,具有吸收边界条件的完美匹配层,在水平多缝波导(HMSW)结构中进行了设计。结果表明,HMSW的双折射​​比单缝波导的双折射强,从而导致本装置的长度减小。此外,HMSW还可以增强缝隙区域内部的光学限制。分析了由两个平行的HMSW组成的定向耦合器的耦合长度,它是波导参数的函数,并且实现了长度为238.0μm的紧凑型器件,对于准横向电场和反向电场,其串扰为-27.9和-35.6dB。准横向磁模式。另外,还证明了注入场沿通过偏振分束器的传播距离的演变。

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