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Polarization characteristics of photonic crystal fibers selectively filled with metal wires into cladding air holes

机译:选择性地将金属丝填充到包层气孔中的光子晶体光纤的偏振特性

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摘要

We numerically investigate the polarization characteristics of photonic crystal fibers selectively filled with metal wires into cladding air holes, through a full-vector modal solver based on the finite-element method (FEM). Firstly, we investigate the fundamental coupling properties between the core guided light and surface plasmon polaritons (SPPs) excited on the surface of metal wire. Secondly, we show that we can obtain highly polarization-dependent transmission characteristics in PCFs by introducing several metal wires closely aligned into the cladding, and reveal the strongly polarization-dependent coupling properties between the core guided modes and the SPP supermodes, which consist of discrete SPP modes. Finally, we show the importance of arranging the metal wires close to each other for high polarization-dependence.
机译:我们通过基于有限元方法(FEM)的全矢量模态求解器,数值研究了选择性地将金属丝填充到包层气孔中的光子晶体光纤的偏振特性。首先,我们研究了芯线导光和在金属丝表面上激发的表面等离激元极化子(SPP)之间的基本耦合特性。其次,我们表明,通过将几根紧密对准包层的金属线引入,可以在PCF中获得高度偏振相关的传输特性,并揭示了芯导模和SPP超模之间强烈偏振相关的耦合特性,这些特性包括离散的SPP模式。最后,我们展示了为了高度极化相关性,将金属线彼此靠近布置的重要性。

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