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Polarization-dependent plasmonic splitter based on low-loss polymer optical materials

机译:基于低损耗聚合物光学材料的极化依赖性等离子体分离器

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A polarization-dependent optical beam splitter consisting of a straight long-range surface plasmon polariton (LRSPP) waveguide and an S-bend polymer waveguide was designed, fabricated and measured in this paper. At the splitting section, the two different waveguides are vertically coupled. The measurenment results show that the splitter operated in dual-channel mode at TM polarization, and single-channel mode at TE polarization. In addition, the polymer waveguide and LRSPP waveguide in the splitter exhibit low propagation loss of 0.51 dB/cm and 1.7 dB/cm, respectively. The hybrid beam splitter has wide potential applications in three dimensional (3D) multilayer photonic integrated circuits (PICs).
机译:在本文中设计,制造和测量,由直的远程表面等离子体Polariton(LRSPP)波导和S弯曲聚合物波导组成的偏振依赖性光束分离器。 在分裂部分处,两个不同的波导是垂直耦合的。 测量结果表明,分离器在TM偏振下以双通道模式操作,以及TE偏振的单通道模式。 另外,分离器中的聚合物波导和LRSPP波导分别表现出0.51dB / cm和1.7dB / cm的低传播损失。 混合分子分离器具有三维(3D)多层光子集成电路(PIC)的宽潜在应用。

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