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Cathodoluminescence nanoscopy of open single-crystal aluminum plasmonic nanocavities

机译:阴极发光nanoscopy开放单晶铝电浆nanocavities

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摘要

Exact understanding of the plasmon response of aluminum (Al) nanostructures in deep subwavelengths is critical for the design of Al based plasmonic applications, such as the emission control of quantum dots and surface-enhanced resonance Raman scattering in the ultraviolet (UV) range. Here, the plasmonic properties of open triangle cavities patterned by a focused ion beam in single-crystal bulk Al were explored using cathodoluminescence. The resonant modes were determined by experimental spectra and deep subwavelength real-space mode patterns ranging from the visible to the UV, which agreed well with full-wave electromagnetic simulations. The dispersion relation of the cavity modes was consistent with that at the interface between Al and vacuum, showing strong electromagnetic field confinement in the cavities. Open Al triangle cavities provided room for the interaction between optical emitters and confined electromagnetic fields, paving the way for plasmonic devices for a variety of applications, such as plasmonic light-emitting devices or nanolasers in the UV range.
机译:的等离子体反应的确切理解铝(Al)纳米结构在深亚波长对的设计至关重要基于电浆的应用程序,如量子点和排放控制表面增强共振喇曼散射紫外线(UV)范围内。属性的开放三角形蛀牙的聚焦离子束在单晶散装艾尔探索利用阴极发光。模式是由实验光谱和决定深亚波长真实空间模式的模式从可见到紫外,同意了与全波电磁仿真。腔模式的色散关系一致,在半岛之间的接口和真空,表现出强烈的电磁场监禁的蛀牙。蛀牙提供互动的空间光发射器和限制之间电磁场,铺平了道路电浆设备为各种不同的应用程序,如电浆或发光设备nanolasers紫外线范围。

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