等离子体子
诺共振
材料科学
激光线宽
光电子学
法诺平面
纳米尺度
光学
调制(音乐)
纳米技术
纳米结构
物理
激光器
声学
数学
纯数学
作者
Jianjun Chen,Fengyuan Gan,Yujia Wang,Guozhou Li
标识
DOI:10.1002/adom.201701152
摘要
Abstract The rapid developments in nanotechnology and plasmonics allow the manipulation of light at nanometer scales, such as light propagation and resonances. Differing from the symmetric Lorentzian‐like profiles in the conventional resonances, Fano resonances, which originate from the interference of different resonant modes, exhibit obviously asymmetric spectral profiles. Based on lineshape engineering, the Fano resonances with sharp asymmetric profiles exhibit a small linewidth and a high spectral contrast by exploiting different mechanisms and designing various metallic nanostructures. Both of the above properties in the sharp Fano resonances have significant applications in nanoscale plasmonic sensors and modulators. This review summarizes the underlying mechanism of the Fano resonances in various metallic nanostructures. Then, practical applications of the Fano resonances in nanoscale plasmonic sensing and modulation are reviewed. At last, the development and challenges of plasmonic sensing and modulation based on Fano resonances are discussed.
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