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Compound guided waves that mix characteristics of surface-plasmon-polariton, Tamm, Dyakonov–Tamm, and Uller–Zenneck waves

机译:复合引导波,混合表面 - 偏振片,Tamm,Dyakonov-Tamm和Uller-Zenneck波的特点

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摘要

Solutions of the boundary-value problem for electromagnetic waves guided by a layer of a homogeneous and isotropic (metal or dielectric) material sandwiched between a structurally chiral material (SCM) and a periodically multilayered isotropic dielectric (PMLID) material were numerically obtained and analyzed. If the sandwiched layer is sufficiently thick, the two bimaterial interfaces decouple from each other, and each interface may guide one or more electromagnetic surface waves (ESWs) by itself. Depending on the constitution of the two materials that partner to form an interface, the ESWs can be classified as surface-plasmon-polariton waves, Tamm waves, Dyakonov–Tamm waves, or Uller–Zenneck waves. When the sandwiched layer is sufficiently thin, the ESWs for single bimaterial interfaces coalesce to form compound guided waves (CGWs). The phase speeds, propagation distances, and spatial profiles of the electromagnetic fields of CGWs are different from those of the ESWs. The energy of a CGW is distributed in both the SCM and the PMLID material, if the sandwiched layer is sufficiently thin. Some CGWs require the sandwiched layer to have a minimum thickness. Indeed, the coupling between the two faces of the sandwiched layer is affected by the ratio of the thickness of the sandwiched layer to the skin depth in that material and the rates at which the fields of the ESWs guided individually by the two interfaces decay away from their respective guiding interfaces.
机译:用夹在结构上手性材料(SCM)和周期性多层各向同性电介质(PMLID)材料之间夹在的均匀和各向同性(金属或电介质)材料层的均匀和各向同性(金属或电介质)材料层的边值问题的解值问题进行了数值和分析并分析。如果夹层层足够厚,则两个双材料界面彼此分离,并且每个接口可以自身引导一个或多个电磁表面波(ESWS)。根据合作伙伴形成界面的两种材料的构成,ESW可以被归类为表面等离子体 - 极性振荡,TAMM波,Dyakonov-Tamm波,或Uller-Zenneck波。当夹层层足够薄时,用于单个双层界面的ESWS聚结以形成复合引导波(CGW)。 CGW的电磁场的相位速度,传播距离和空间轮廓与ESW的电磁场不同。如果夹层层足够薄,则CGW的能量分布在SCM和PMLID材料中。一些CGW要求夹层层具有最小厚度。实际上,夹层层的两个面之间的耦合受夹层层的厚度与皮肤深度的比率的影响,并且通过两个接口衰减的ESWS的字段单独引导的速率他们各自的指导界面。

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