Yao Haizi, Zhong Shuncong
J Opt Soc Am A Opt Image Sci Vis. 2014 Aug 1;31(8):1856-60. doi: 10.1364/JOSAA.31.001856.
The spoof surface plasmon polariton (SPP) effect on the electromagnetic field distribution near the tip of a periodically corrugated metal cylinder-cone probe working at the terahertz regime was studied. We found that radially polarized terahertz radiation could be coupled effectively through a spoof SPP into a surface wave and propagated along the corrugated surface, resulting in more than 20× electric field enhancement near the tip of probe. Multiple resonances caused by the antenna effect were discussed in detail by finite element computation and theoretical analysis of dispersion relation for spoof SPP modes. Moreover, the key figures of merit such as the resonance frequency of the SPP can be flexibly tuned by modifying the geometry of the probe structure, making it attractive for application in an apertureless background-free terahertz near-field microscope.
研究了在太赫兹波段工作的周期性波纹金属圆柱-圆锥探针尖端附近的电磁场分布的类表面等离激元极化激元(SPP)效应。我们发现,径向极化的太赫兹辐射可以通过类SPP有效地耦合到表面波中,并沿着波纹表面传播,从而在探针尖端附近产生超过20倍的电场增强。通过有限元计算和类SPP模式色散关系的理论分析,详细讨论了由天线效应引起的多重共振。此外,通过修改探针结构的几何形状,可以灵活地调节诸如SPP共振频率等关键品质因数,这使得它在无孔径无背景太赫兹近场显微镜中的应用具有吸引力。