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基于近零介电常数等离子体波导的可调谐非线性相干完美吸收

Tunable nonlinear coherent perfect absorption with epsilon-near-zero plasmonic waveguides.

作者信息

Li Ying, Argyropoulos Christos

出版信息

Opt Lett. 2018 Apr 15;43(8):1806-1809. doi: 10.1364/OL.43.001806.

Abstract

We propose a scheme to realize nonlinear coherent perfect absorption (CPA) at the nanoscale using epsilon-near-zero (ENZ) plasmonic waveguides. The general conditions to achieve CPA in a linear ENZ plasmonic waveguide are analyzed and presented. The proposed ENZ waveguides support an effective ENZ response at their cutoff frequency, where the CPA effect occurs under the illumination of two counterpropagating plane waves with equal amplitudes and appropriate phase distributions. In addition, the strong and uniform field enhancement inside the nanochannels of the waveguides at the ENZ resonance can efficiently boost Kerr nonlinearities, resulting in a new all-optical switching intensity-dependent CPA phenomenon that can be tunable with ultrafast speed. The proposed free-standing ENZ structures combine third-order nonlinear functionality with standing wave CPA interference effects in a nanoscale plasmonic configuration, thus leading to a novel degree of tunable light-matter interactions achieved in subwavelength regions. Our findings provide a new platform to efficiently excite nonlinear phenomena at the nanoscale and design tunable coherent perfect absorbers.

摘要

我们提出了一种利用近零介电常数(ENZ)等离子体波导在纳米尺度实现非线性相干完美吸收(CPA)的方案。分析并给出了在线性ENZ等离子体波导中实现CPA的一般条件。所提出的ENZ波导在其截止频率处支持有效的ENZ响应,在两个振幅相等且具有适当相位分布的反向传播平面波的照射下会出现CPA效应。此外,在ENZ共振时波导纳米通道内强烈且均匀的场增强可以有效地增强克尔非线性,从而产生一种新的全光开关强度依赖的CPA现象,该现象可以以超快速度进行调谐。所提出的独立式ENZ结构在纳米尺度等离子体配置中将三阶非线性功能与驻波CPA干涉效应相结合,从而在亚波长区域实现了一种新型的可调谐光与物质相互作用程度。我们的研究结果提供了一个新平台,可在纳米尺度高效激发非线性现象并设计可调谐相干完美吸收体。

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