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High-efficiency electro-optic polymer light modulator based on waveguide-coupled surface plasmon resonance

机译:基于波导耦合表面等离子体共振的高效电光聚合物光调制器

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A novel high efficiency electro-optic polymer light modulator based on waveguide-coupled surface plasmon resonance (WCSPR) is presented. The modulator consists of a five-layer system: dielectric layer/metal film/electro-optic (E-O) polymer layer/metal film/air. By combining WCSPR based on attenuated total reflection (ATR) method and Pockels effect from poled E-O polymer, we demonstrate that this kind of modulator operated with less applying modulation voltage, less optical insertion loss, and easy alignment compared to other light modulation techniques. Also, in this paper the theoretical derivation of WCSPR, the optimum design concerning the relation between the efficiency of modulator and E-O layer thickness, and the fabrication process of the E-O polymer light modulator are presented. This modulator is shown to allow a greater degree of modulation for a given voltage with working point chosen near the midst of WCSPR mode in the visible range.
机译:提出了一种基于波导耦合表面等离子体共振(WCSPR)的新型高效电光聚合物光调制器。调制器由五层系统组成:介电层/金属膜/电光(E-O)聚合物层/金属薄膜/空气。通过基于衰减的全反射(ATR)方法和POLRED E-O聚合物的POCKELs效应来组合WCSPR,我们证明了与其他光调制技术相比,这种调制器较少,光学插入丢失较少,易于对准。此外,在本文中,介绍了WCSPR的理论推导,提出了关于调制器效率与E-O层厚度的关系的最佳设计,以及E-O聚合物光调制器的制造过程。该调制器被示出为允许具有在可见范围内的WCSPR模式中选择的工作点的给定电压的更大程度的调制。

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