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Multilayered metal-insulator plasmonic nanocavities: toward tunable multi-resonance nano-devices for integrated optics

机译:多层金属绝缘体等离子体纳米腔:面向集成光学的可调谐多共振纳米器件

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摘要

Plasmonic nanocavities can control light flows and enhance light-mater interactions at subwavelength scale, and thus can potentially be used as nanoscale components in integrated optics systems either for passive optical coupling, or for active optical modulation and emission. In this work, we investigated a new type of multilayered metal-insulator optical nanocavities that can support multiple localized plasmon resonances with ultra-small mode volumes. The total number of resonance peaks and their resonance wavelengths can be freely and accurately controlled by simple geometric design rules. Multi-resonance plasmonic nanocavities can serve as a nanoscale wavelength-multiplexed optical components in integrated optics systems, such as optical couplers, light emitters, nanolasers, optical sensors, and optical modulators.
机译:等离子纳米腔可以控制光流并增强亚波长级的光物质相互作用,因此可以潜在地用作集成光学系统中的纳米级组件,用于无源光耦合或有源光调制和发射。在这项工作中,我们研究了一种新型的多层金属绝缘体光学纳米腔,该腔可以支持具有超小模式体积的多个局部等离激元共振。共振峰的总数及其共振波长可以通过简单的几何设计规则自由,准确地控制。多共振等离子体纳米腔体可以用作集成光学系统中的纳米级波长复用光学组件,例如光学耦合器,光发射器,纳米激光器,光学传感器和光学调制器。

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