通过表面等离子体激元实现从近场到远场的纳米尺寸信息的高效传输
High-efficiency transmission of nanoscale information by surface Plasmon polaritons from near field to far field
本文提出了一种将SPPs转化为光波的简单而非常实用的方法,其基本思想是利用光波激发SPP的逆过程,既利用Kretschmann或Otto结构把已被激发出来的SPP耦合到棱镜中并转化为相应光波传向远场。文中详细讨论了SPPs激发和耦合输出的物理过程,探索了将SPPs高效耦合输出的新方法。等腰三角形相位光栅具有将SPPs耦合输出和相位调制双重作用,可以很好的实现这一思想。文中对这种特殊系统进行了详细的探讨,并模拟计算了其远场角谱分布。通过远场的角谱可以推演光学近场信息,这一方法可以避免制作高质量的近场光学扫描探针,为近场光学讯号的远场输出提供了一条新途径。在近场光学显微成像,和基于表面等离子体激元传感器方面有着很大的实际意义
n idea is proposed to convert optical information of the near field into propagation waves by an isosceles triangle phase-grating coated metal film for super-resolution imaging. We analyzed the reverse process of exciting surface plasmon polaritons SPPs by attenuated total reflection coupling mode, and found it was possible and effective to transfer the nanoscale information from near field to far field by the special phase grating. In this article, the excitation mechanisms of the SPPs and the details of the high-efficiency coupling output of the near-field light waves were explored. A special coupling microstructure was designed so that the near-field information could be collected in the far field. We also built an optical transfer function of the superlens imaging system, and reconstructed the simulation image of nanoscale object. Analysis and calculation shows that the isosceles triangle phase-grating coated metal film plays an important role in far-field imaging beyond the diffraction limit, namely, converting evanescent waves to propagating waves and changing the direction of the optical wave by the phase modulation. The methods provide a way to quickly get the near-field information without complicated requirements.
张志友、杜惊雷、孙秀辉、郭永康
光电子技术物理学
近场光学表面等离子体激元Kretschmann或Otto结构等腰相位光栅
Near field opticsSurface Plasmon polaritonsKretschman or Otto configurationIsosceles triangle phase grating
张志友,杜惊雷,孙秀辉,郭永康.通过表面等离子体激元实现从近场到远场的纳米尺寸信息的高效传输[EB/OL].(2009-12-14)[2025-08-02].http://www.paper.edu.cn/releasepaper/content/200912-417.点此复制
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