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首页> 外文期刊>Plasmonics >Deep-subwavelength Guiding and Superfocusing of Spoof Surface Plasmon Polaritons on Helically Grooved Metal Wire
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Deep-subwavelength Guiding and Superfocusing of Spoof Surface Plasmon Polaritons on Helically Grooved Metal Wire

机译:螺旋槽金属丝上的深亚波长引导和超表面的等离子体表面等离激元极化子聚焦

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Deep-subwavelength guiding and superfocusing of spoof surface plasmon polaritons (SSPPs) realized on a helically grooved metal wire at microwave frequencies are presented in this paper. Two smooth bridges with gradient helical grooves decorated on the cylindrical and conical metal wire are proposed and designed, respectively. High-efficiency and broadband mode conversion from the traditional guided waves to the SSPPs and superfocusing of SSPPs are reported. Numerical simulations quantitatively show that the amplitudes of electric field at the tip of the conical wire with gradient helical grooves can be magnified 50 times more than that of the input signal in broadband. Moreover, the second transition structure ensures that the depth of helical groove can be tuned flexibly and arbitrarily, making it compatible with all kinds of N-type coaxial connectors. Strong field concentration and superfocusing of these two structures can be easily extended to terahertz (THz) frequencies by tuning the geometrical parameters and can find important applications in sensing, spectroscopy and near-field imaging in the microwave and THz frequencies.
机译:本文介绍了在螺旋槽金属丝上以微波频率实现的深亚波长引导和欺骗表面等离振子极化子(SSPP)的超聚焦。分别提出和设计了两个在圆柱和圆锥形金属线上饰有渐变螺旋凹槽的光滑桥。据报道,从传统的导波到SSPP的高效和宽带模式转换以及SSPP的超聚焦。数值模拟定量地表明,具有梯度螺旋形凹槽的圆锥形线的尖端处的电场幅度可以放大到宽带输入信号的50倍。此外,第二过渡结构确保螺旋槽的深度可以灵活地任意调节,使其与各种N型同轴连接器兼容。通过调整几何参数,很容易将这两种结构的强场集中和超聚焦扩展到太赫兹(THz)频率,并且可以在微波和THz频率的感测,光谱学和近场成像中找到重要的应用。

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