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Using the Surface Impedance Model to Analyze Plasmonic Modes of a Circular Single Wire at Terahertz and Optical Frequencies

机译:使用表面阻抗模型分析太赫兹和光学频率的圆形单线的等离子体模式

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At optical frequencies metals are penetrated by electromagnetic fields and interact with the incident waves like lossy dielectrics with negative index. Therefore, a single metallic wire can make a waveguide to convey the optical waves. This characteristic entails considering the field distributions inside the metallic single wire for correct analysis of plasmonic waves. The surface impedance technique relaxes this condition by modeling the interior fields with surface impedance. The accuracy of this method as well as its domain of validity is studied by comparing it with two other well-known techniques namely analytical solution and the method of moment (MoM). It is shown that the surface impedance model can be accurate at terahertz and infrared frequencies when the field distributions in exterior domain are desired.
机译:在光学频率下,金属由电磁场穿透并与具有负指数的有损电介质的入射波相互作用。因此,单个金属线可以使波导输送光波。这种特性需要考虑金属单线内的田间分布,以正确分析等离子体波。表面阻抗技术通过用表面阻抗建模内部田地来放松这种情况。通过将其与另外两种众所周知的技术进行比较,研究了该方法的准确性以及其有效性的域,即分析解决方案和时刻(MOM)的方法。结果表明,当需要外部域中的场分布时,表面阻抗模型可以在太赫兹和红外频率下准确。

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