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表面等离激元极化激元引导辐射。

Radiation guiding with surface plasmon polaritons.

机构信息

Institute of Technology and Innovation, University of Southern Denmark, Odense M, DK-5230 Denmark.

出版信息

Rep Prog Phys. 2013 Jan;76(1):016402. doi: 10.1088/0034-4885/76/1/016402. Epub 2012 Dec 19.

DOI:10.1088/0034-4885/76/1/016402
PMID:23249644
Abstract

Surface plasmon polaritons (SPPs) are electromagnetic (EM) modes propagating along metal-dielectric interfaces, in which surface collective excitations of free electrons in the metal are coupled to evanescent EM fields in the dielectric. Various SPP modes can be supported by flat and curved, single and multiple surfaces, exhibiting remarkable properties, including the possibility of concentrating EM fields beyond the diffraction limit, i.e. on the nanoscale, while enhancing local field strengths by several orders of magnitude. This unique feature of SPP modes, along with the ever-increasing demands for miniaturization of photonic components and circuits, generates an exponentially growing interest in SPP-mediated radiation guiding and SPP-based waveguide components. Here we review the current status of this rapidly developing field, starting with a brief presentation of the main planar SPP modes along with the techniques employed for their excitation and manipulation by sets of nanoparticles. We then describe in detail various SPP-based waveguide configurations that ensure two-dimensional mode confinement in the plane perpendicular to the propagation direction and compare their characteristics. Excitation of SPP waveguide modes and recent progress in the development of SPP-based waveguide components are also discussed, concluding with our outlook on challenges and possible future developments in this field.

摘要

表面等离激元(SPP)是沿着金属-电介质界面传播的电磁(EM)模式,其中金属中自由电子的表面集体激发与电介质中的消逝 EM 场耦合。各种 SPP 模式可以由平面和曲面、单个和多个表面支持,表现出显著的特性,包括将 EM 场集中在超出衍射极限的位置,即在纳米尺度上,同时通过几个数量级增强局部场强的可能性。SPP 模式的这一独特特性,以及对光子组件和电路小型化的需求不断增加,使得 SPP 介导的辐射引导和基于 SPP 的波导组件的应用产生了指数级的增长。本文从主要的平面 SPP 模式的简要介绍开始,介绍了用于激发和操纵纳米粒子组的 SPP 模式的技术,综述了这一快速发展的领域的现状。然后详细描述了各种基于 SPP 的波导结构,这些结构确保了垂直于传播方向的平面内二维模式限制,并比较了它们的特性。还讨论了 SPP 波导模式的激发以及基于 SPP 的波导组件的最新发展,并对该领域的挑战和可能的未来发展进行了展望。

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