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Simulation of cross-talk reduction in multimode waveguide-based micro-optical switching systems by use of single-mode filters

机译:使用单模滤波器模拟基于多模波导的微光交换系统中的串扰减少

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摘要

We propose a method to reduce cross talk by using single-mode filters, namely, extracting the fundamental mode from a multimode optical network (EFMON). The EFMON effect is evaluated for a three-step switching system consisting of cascade electro-optic (EO) waveguide prism deflector (WPD) micro-optical switches (MOSs) and a multimode waveguide network. The WPD MOS is optimized for single-mode operation in lead lanthanum zirconate titanate thin films as EO slab waveguides with a driving voltage of 12 V, a length of 310 μm, and a channel distance of 20μm. Beam propagation method simulation reveals that mode disturbance, higher-order modes, and cross talk are accumulated by switching steps. A single-mode filter for EFMON in the output region of the switching system reduces cross talk to below -20 dB at a propagation length of 2000μm in the single-mode filter and below -30 dB at 20000μm.
机译:我们提出了一种通过使用单模滤波器来减少串扰的方法,即从多模光网络(EFMON)中提取基本模式。针对三级开关系统评估了EFMON效果,该系统由级联电光(EO)波导棱镜偏转器(WPD)微光学开关(MOS)和多模波导网络组成。 WPD MOS针对EO平板波导中的锆酸钛酸镧镧铅薄膜中的单模操作进行了优化,其驱动电压为12 V,长度为310μm,通道距离为20μm。光束传播方法仿真表明,通过切换步骤可以积累模式干扰,高阶模式和串扰。开关系统输出区域中用于EFMON的单模滤波器在2000μm的传播长度下将串扰降低到-20 dB以下,在20000μm时将串扰降低到-30 dB以下。

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