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Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton

机译:Tamm Plasmon Polariton的Epsilon-Near-Zero吸收剂

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Two schemes of excitation of a Tamm plasmon polariton localized at the interface between a photonic crystal and a nanocomposite with near-zero effective permittivity have been investigated in the framework of the temporal coupled-mode theory. The parameters of the structure have been determined, which correspond to the critical coupling of the incident field with a Tamm plasmon polariton and, consequently, ensure the total absorption of the incident radiation by the structure. It has been established that the spectral width of the absorption line depends on the scheme of Tamm plasmon polariton excitation and the parameters of a nanocomposite film. The features of field localization at the Tamm plasmon polariton frequency for different excitation schemes have been examined. It has been demonstrated that such media can be used as narrowband absorbers based on Tamm plasmon polaritons localized at the interface between a photonic crystal and a nanocomposite with near-zero effective permittivity.
机译:在时间耦合模理论的框架内,研究了两种激发Tamm等离子体激元极化子的方案,该极化子位于光子晶体和纳米复合材料之间,具有接近零的有效介电常数。已经确定了结构的参数,这些参数对应于入射场与Tamm等离子体激元极化的临界耦合,因此确保了结构对入射辐射的完全吸收。已经确定吸收线的光谱宽度取决于Tamm等离子体激元极化激发的方案和纳米复合膜的参数。研究了不同激励方案在Tamm等离子体激元极化频率处的场定位特征。已经证明,这种介质可用作基于Tamm等离子体激元极化子的窄带吸收剂,Tamm等离子体激元极化子位于光子晶体和具有约零有效介电常数的纳米复合材料之间的界面上。

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