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Tunable all-optical plasmonic diode based on Fano resonance in nonlinear waveguide coupled with cavities

机译:耦合腔的非线性波导中基于Fano共振的可调谐全光等离子体二极管

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摘要

Tunable all-optical plasmonic diode is proposed based on the Fano resonance in an asymmetric and nonlinear system, comprising metal-insulator-metal waveguides coupled with nanocavities. The spatial asymmetry of the system gives rise to the nonreciprocity of the field localizations at the nonlinear gap between the coupled cavities and to the nonreciprocal nonlinear response. Nonlinear Fano resonance, originating from the interference between the discrete cavity mode and the continuum traveling mode, is observed and effectively tuned by changing the input power. By combining the unidirectional nonlinear response with the steep dispersion of the Fano asymmetric line shape, a transmission contrast ratio up to 41.46 dB can be achieved between forward and backward transmission. Our all-optical plasmonic diode with compact structure can find important applications in integrated optical nanocircuits. (C) 2015 Optical Society of America
机译:在非对称和非线性系统中,基于Fano共振,提出了一种可调谐全光等离子体二极管,该二极管包括与纳米腔耦合的金属-绝缘体-金属波导。系统的空间不对称性导致耦合腔之间的非线性间隙处的场局域性的非互易性,以及不可逆的非线性响应。观察到非线性Fano共振,该共振源于离散腔模式与连续传播模式之间的干扰,并通过更改输入功率进行有效地调谐。通过将单向非线性响应与Fano非对称线形的陡峭色散相结合,可以在向前和向后传输之间实现高达41.46 dB的传输对比度。我们的具有紧凑结构的全光等离子体二极管可以在集成光学纳米电路中找到重要的应用。 (C)2015年美国眼镜学会

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