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Impedance Model of Cylindrical Nanowires for Metamaterial Applications

机译:用于超材料的圆柱形纳米线的阻抗模型

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摘要

In metamaterials, metallic nanowires are used for creating artificial materials to functionalize them for various nanophotonics applications. Strong polarization-dependent response coupled with complex dielectric function at optical frequencies gives additional degrees of freedom to achieve scattering, absorption, and other benefits that go much beyond what is possible with conventional materials. In this paper, we propose an extended cylindrical wave impedance approach at optical frequencies to model the internal and external impedance of the metallic nanowire. Equivalent analytical expression for the scattering, extinction, and absorption cross-sectional area efficiencies are derived in terms of impedances. The motivation is to develop an all-mode solution (TMn and TEn modes), by bringing the complex problem of plasmonic nanowire to linear system theory, where established methods can be applied to enable new applications. The equivalence of the impedance solution is compared with electromagnetic field solution and numerical full-wave field simulations. The proposed solution is accurate and may contribute to the rapid and efficient future designs for the metallic nanowire-based nanophotonic metamaterials.
机译:在超材料中,金属纳米线用于制造人造材料,以使其功能化,以用于各种纳米光子学应用。强偏振相关的响应以及在光频率处的复杂介电功能为实现散射,吸收和其他好处提供了额外的自由度,这远远超出了传统材料所能达到的范围。在本文中,我们提出了在光学频率下扩展的圆柱波阻抗方法,以对金属纳米线的内部和外部阻抗进行建模。散射,消光和吸收截面积效率的等效分析表达式是根据阻抗得出的。动机是开发一种全模式解决方案( TM n TE n 模式),通过将等离子体纳米线的复杂问题引入线性系统理论,可以在其中应用已建立的方法来实现新的应用。将阻抗解的等效性与电磁场解和数值全波场模拟进行了比较。提出的解决方案是准确的,并且可能有助于基于金属纳米线的纳米光子超材料的快速有效的未来设计。

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