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Optimized half-wave voltage and insertion loss in a strip-loaded waveguide electro-optic polymer modulator

机译:带载波导电光聚合物调制器中的优化半波电压和插入损耗

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摘要

A strip-loaded waveguide, electro-optic modulator was designed and analyzed in terms of single mode conditions, optical loss due to the metal electrodes, modulation efficiency, and mode size. Two designs were compared: Design 1 optimized the half-wave voltage (V_(pi) velence 1.1 V) with a nearly symmetric waveguide by maximizing modulation efficiency and minimizing the overall thickness of the waveguide; Design 2 optimized the insertion loss by reducing coupling loss by 4.6 dB via a strongly asymmetric waveguide that maximizes the overall mode size to most efficiently overlap with a single mode fiber. Design 2 also has a favorable half-wave voltage (V_(pi) velence 1.75 V). Some general guidelines in the selection of cladding layers in a detailed design of a poled-polymer electro-optic modulator incorporating a strip-loaded waveguide structure are suggested.
机译:根据单模条件,由于金属电极引起的光损耗,调制效率和模尺寸,设计并分析了带状负载波导电光调制器。比较了两种设计:设计1通过最大化调制效率和最小化波导的整体厚度,利用近似对称的波导优化了半波电压(V_pi velence 1.1 V)。设计2通过强非对称波导将耦合损耗降低4.6 dB,从而优化了插入损耗,该波导最大程度地扩大了整体模式尺寸,从而最有效地与单模光纤重叠。设计2还具有良好的半波电压(V_(pi)声速1.75 V)。在结合带状负载波导结构的极化聚合物电光调制器的详细设计中,建议了一些选择包层的通用准则。

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