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Surface Plasmon Induced Polarization Filter Based on Au Wires and Liquid Crystal Infiltrated Photonic Crystal Fibers

机译:基于金丝和液晶渗透光子晶体光纤的表面等离子体激元偏振滤光片

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摘要

The polarization filter characteristics of Au wires and liquid crystal infiltrated photonic crystal fibers are investigated by using the finite element method. The nematic liquid crystal of E7 being injected into cladding air holes is benefit to induce large birefringence under controllable electrical field. The simulation results show that the surface plasmon resonance is strongly inspired by core modes in y-polarized direction. Meanwhile, the coupling between core modes in x-polarized direction and surface plasmon polaritons modes is faint. The confinement losses can achieve 446 dB/cm in y-polarized direction and 0.8 dB/cm in x-polarized direction at wavelength of 1550 nm in one of our designed fiber. The effects of fiber structural parameters and temperature are investigated with a view of tuning and optimizing the confinement loss spectrum. Own to the large contrast of confinement losses in two orthogonal directions, the designed Au wires and liquid crystal infiltrated photonic crystal fibers promise candidate for tunable polarization filter devices.
机译:采用有限元方法研究了金线和液晶渗透光子晶体光纤的偏振滤光特性。注入包层气孔中的E7向列液晶有利于在可控电场下引起大的双折射。仿真结果表明,表面等离子体激元共振受到y极化方向上核心模式的强烈启发。同时,在x极化方向上的核心模式与表面等离激元极化子模式之间的耦合是微弱的。在我们设计的一种光纤中,在1550 nm波长下,y偏振方向的限制损耗可以达到446 dB / cm,x偏振方向的密封损耗可以达到0.8 dB / cm。研究了纤维结构参数和温度的影响,以优化和优化限制损耗谱。由于在两个正交方向上的限制损耗有很大的反差,所以设计的金线和液晶渗透的光子晶体光纤有望成为可调谐偏振滤波器的候选器件。

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