Wang Zixiao, Ren Guobin, Gao Yixiao, Zhu Bofeng, Jian Shuisheng
Opt Express. 2017 Oct 2;25(20):23989-24000. doi: 10.1364/OE.25.023989.
Due to the characteristic of surface plasmon polaritons (SPP) excitation, radial polarized beams and circular polarized beams are widely used for plasmonic lens and plasmonic near field focusing. In this paper, a plasmonic lens based on in-plane total internal reflection (TIR) scheme is proposed and numerically demonstrated to achieve the simultaneous nanofocusing of azimuthal and radial polarized beams. By means of the in-plane TIR mechanism, the operation bandwidth of lens ranges from visible light to mid-infrared. The proposed structure has been utilized in the design of a plasmonic liquid refractive index sensor and is expected to find potential applications in near-field optical energy focusing, near-field imaging and sensing.
由于表面等离激元极化激元(SPP)激发的特性,径向偏振光束和圆偏振光束被广泛应用于等离激元透镜和等离激元近场聚焦。本文提出了一种基于面内全内反射(TIR)方案的等离激元透镜,并通过数值模拟证明了其能够实现方位角偏振光束和径向偏振光束的同时纳米聚焦。借助面内全内反射机制,该透镜的工作带宽涵盖可见光至中红外波段。所提出的结构已应用于等离激元液体折射率传感器的设计中,并有望在近场光能聚焦、近场成像和传感等领域找到潜在应用。