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等离子体共振器天线的光谱特性。

Spectral properties of plasmonic resonator antennas.

作者信息

Barnard Edward S, White Justin S, Chandran Anu, Brongersma Mark L

机构信息

Geballe Laboratory for Advanced Materials, Stanford University 476 Lomita Mall, Stanford, CA 94305, USA.

出版信息

Opt Express. 2008 Oct 13;16(21):16529-37. doi: 10.1364/oe.16.016529.

Abstract

A theoretical study of the optical properties of metallic nano-strip antennas is presented. Such strips exhibit retardation-based resonances resulting from the constructive interference of counter propagating short-range surface plasmon-polaritons (SR-SPPs) that reflect from the antenna terminations. A Fabry-P erot model was formulated that successfully predicts both the peak position and spectral shape of their optical resonances. This model requires knowledge of the SR-SPP reflection amplitude and phase pickup upon reflection from the structure terminations. These quantities were first estimated using an intuitive Fresnel reflection model and then calculated exactly using full-field simulations based on the finite-difference frequency-domain (FDFD) method. With only three dimensionless scaling parameters, the Fabry-P erot model provides simple design rules for engineering resonant properties of such plasmonic resonator antennas.

摘要

本文对金属纳米带天线的光学特性进行了理论研究。这种纳米带表现出基于延迟的共振,这是由从天线终端反射的反向传播的短程表面等离激元极化子(SR-SPPs)的相长干涉引起的。建立了一个法布里-珀罗模型,该模型成功地预测了其光学共振的峰值位置和光谱形状。该模型需要知道SR-SPP从结构终端反射时的反射幅度和相位。这些量首先使用直观的菲涅尔反射模型进行估计,然后使用基于有限差分频域(FDFD)方法的全场模拟精确计算。仅通过三个无量纲缩放参数,法布里-珀罗模型就为设计这种等离子体谐振器天线的谐振特性提供了简单的规则。

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