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Magneto-optic surface plasmon polariton modulator based on refractive index variations

机译:基于折射率变化的磁光表面等离子体激元极化调制器

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摘要

In this paper, we have proposed a magneto-optic (MO) surface plasmon polariton (SPP) modulator based on variations of refractive index. For description of modulator operation, we have analyzed the MO effects in the insulator-metal-insulator (IMI) SPP slab waveguides in a transversal configuration in which the applied magnetic field is parallel to the interfaces and normal to the wave propagation direction. We have derived an exact dispersion relation by considering MO effects for one of the side layers by the separation of variables method. The cut-off conditions have been studied for the SPP modes guided by IMI structures as a function of the variations of the dielectric constants of the side layers. We have shown that the SPP modes always propagate in a symmetric structure and the SPP odd modes do not have a cut-off dielectric constant in an asymmetric structure. Also, we have shown that in an asymmetric IMI configuration, the SPP even mode has a cut-off effective dielectric constant for all metal layer thicknesses. These configurations can be used to design active devices, such as switches and modulators to be used in photonic integrated circuits.
机译:在本文中,我们根据折射率的变化提出了一种磁光(MO)表面等离子体激元极化(SPP)调制器。为了描述调制器的工作原理,我们分析了在横向配置中的绝缘体-金属-绝缘体(IMI)SPP平板波导中的MO效应,其中所施加的磁场平行于界面并且垂直于波传播方向。我们通过变量分离法考虑了侧层之一的MO效应,得出了精确的色散关系。已经研究了由IMI结构指导的SPP模式的截止条件,该截止条件是侧层介电常数变化的函数。我们已经表明,SPP模式始终以对称结构传播,而SPP奇数模式在非对称结​​构中没有截止介电常数。同样,我们已经表明,在非对称IMI配置中,SPP偶数模式对于所有金属层厚度都具有截止有效介电常数。这些配置可用于设计有源器件,例如要在光子集成电路中使用的开关和调制器。

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