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Three-dimensional cavity nanoantennas with resonant-enhanced surface plasmons as dynamic color-tuning reflectors

机译:三维腔nanoantennas与resonant-enhanced表面电浆子动态color-tuning反射镜

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摘要

As plasmonic antennas for surface-plasmon-assisted control of optical fields at specific frequencies, metallic nanostructures have recently emerged as crucial optical components for fascinating plasmonic color engineering. Particularly, plasmonic resonant nanocavities can concentrate lightwave energy to strongly enhance light-matter interactions, making them ideal candidates as optical elements for fine-tuning color displays. Inspired by the color mixing effect found on butterfly wings, a new type of plasmonic, multiresonant, narrow-band (the minimum is about 45 nm), high-reflectance (the maximum is about 95%), and dynamic color-tuning reflector is developed. This is achieved from periodic patterns of plasmonic resonant nanocavities in free-standing capped-pillar nanostructure arrays. Such cavity-coupling structures exhibit multiple narrow-band selective and continuously tunable reflections via plasmon standing-wave resonances. Consequently, they can produce a variety of dark-field vibrant reflective colors with good quality, strong color signal and fine tonal variation at the optical diffraction limit. This proposed multicolor scheme provides an elegant strategy for realizing personalized and customized applications in ultracompact photonic data storage and steganography, colorimetric sensing, 3D holograms and other plasmon-assisted photonic devices.
机译:作为surface-plasmon-assisted电浆天线控制光在特定字段频率,金属纳米结构最近成为至关重要的光学组件迷人的电浆颜色工程。尤其是,电浆共振nanocavities即可集中光波能量强烈增强件轻松事相互作用,使他们的理想候选人为微调光学元素颜色显示。蝴蝶翅膀上发现的效应,一种新型的电浆,multiresonant窄带(最低45 nm),高反射(最大是95%),和动态color-tuning反射器。周期性的电浆共振模式独立式capped-pillar nanocavities的纳米结构阵列。结构表现出多个窄带选择性通过等离子体和连续可调反射驻波共振。生产各种各样的暗场充满活力反射颜色质量好,强烈的颜色光学信号和精细的色调变化衍射极限。计划提供了一个优雅的实现策略个性化和定制的应用程序数据存储和ultracompact光子隐写术,比色检测,3 d全息图和其他plasmon-assisted光子设备。

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