Nano-Optics and Biophotonics Group, Department of Experimental Physics 5, University of Würzburg, Am Hubland, D-97074, Würzburg, Germany.
Physics Department, Politecnico di Milano, Piazza Leonardo da Vinci 32, I-20133, Milano, Italy.
Sci Rep. 2018 Jan 30;8(1):1921. doi: 10.1038/s41598-018-20239-x.
The validity of Kirchhoff's laws in plasmonic nanocircuitry is investigated by studying a junction of plasmonic two-wire transmission lines. We find that Kirchhoff's laws are valid for sufficiently small values of a phenomenological parameter κ relating the geometrical parameters of the transmission line with the effective wavelength of the guided mode. Beyond such regime, for large values of the phenomenological parameter, increasing deviations occur and the equivalent impedance description (Kirchhoff's laws) can only provide rough, but nevertheless useful, guidelines for the design of more complex plasmonic circuitry. As an example we investigate a system composed of a two-wire transmission line and a nanoantenna as the load. By addition of a parallel stub designed according to Kirchhoff's laws we achieve maximum signal transfer to the nanoantenna.
通过研究等离子体两线传输线的连接,研究了 Kirchhoff 定律在等离子体纳米电路中的有效性。我们发现,对于将传输线的几何参数与导模的有效波长相关联的唯象参数 κ 的足够小的值,Kirchhoff 定律是有效的。超出该范围,对于唯象参数的较大值,会出现较大的偏差,等效阻抗描述(Kirchhoff 定律)只能为更复杂的等离子体电路设计提供粗略但有用的指导。作为一个例子,我们研究了由两线传输线和纳米天线作为负载组成的系统。通过添加根据 Kirchhoff 定律设计的并联短截线,我们实现了向纳米天线的最大信号传输。