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利用等离子体电路测量亚波长相位差——纳米级光信号处理的一个实例

Measuring subwavelength phase differences with a plasmonic circuit--an example of nanoscale optical signal processing.

作者信息

Eftekhari Fatima, Gómez Daniel E, Davis Timothy J

出版信息

Opt Lett. 2014 May 15;39(10):2994-7. doi: 10.1364/OL.39.002994.

Abstract

An ensemble of interacting metal nanostructures supporting localized surface plasmon resonances can be described as a plasmonic circuit. We show that such circuits can perform all-optical linear mathematical operations on multiple input signals, a mechanism we describe as nanoscale optical signal processing. An example plasmonic circuit that mixes together two optical signals at the subwavelength scale and outputs a measure of their phase difference is demonstrated experimentally. It is also shown that the difference circuits function as meta-atoms in a metamaterial that has potential for position-dependent signal processing of an incident light wave.

摘要

一组支持局域表面等离子体共振的相互作用金属纳米结构可被描述为一个等离子体电路。我们表明,这样的电路能够对多个输入信号执行全光线性数学运算,我们将这一机制描述为纳米级光信号处理。实验展示了一个示例等离子体电路,它在亚波长尺度上混合两个光信号并输出它们相位差的测量值。还表明,差分电路在一种超材料中起到超原子的作用,这种超材料具有对入射光波进行位置依赖信号处理的潜力。

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