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Single MoO3 nanoribbon waveguides: good building blocks as elements and interconnects for nanophotonic applications

机译:单个MoO3纳米带状波导:纳米光子应用的良好构件和互连元素

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摘要

Exploring new nanowaveguide materials and structures is of great scientific interest and technological significance for optical and photonic applications. In this work, high-quality single-crystal MoO3 nanoribbons (NRs) are synthesized and used for optical guiding. External light sources are efficiently launched into the single MoO3 NRs using silica fiber tapers. It is found that single MoO3 NRs are as good nanowaveguides with loss optical losses (typically less than 0.1 dB/μm) and broadband optical guiding in the visibleear-infrared region. Single MoO3 NRs have good Raman gains that are comparable to those of semiconductor nanowaveguides, but the second harmonic generation efficiencies are about 4 orders less than those of semiconductor nanowaveguides. And also no any third-order nonlinear optical effects are observed at high pump power. A hybrid Fabry-Pérot cavity containing an active CdSe nanowire and a passive MoO3 NR is also demonstrated, and the ability of coupling light from other active nanostructures and fluorescent liquid solutions has been further demonstrated. These optical properties make single MoO3 NRs attractive building blocks as elements and interconnects in miniaturized photonic circuitries and devices.
机译:探索新的纳米波导材料和结构对于光学和光子应用具有重大的科学兴趣和技术意义。在这项工作中,合成了高质量的单晶MoO3纳米带(NRs),并将其用于光导。使用石英纤维锥度将外部光源有效地发射到单个MoO3 NR中。已经发现,单一的MoO3 NRs可以作为良好的纳米波导,其光损耗(通常小于0.1µdB /μm)低,并且在可见/近红外区域具有宽带光导。单个MoO3 NR具有良好的拉曼增益,可与半导体纳米波导相媲美,但二次谐波产生效率比半导体纳米波导低约4个数量级。在高泵浦功率下也没有观察到任何三阶非线性光学效应。还展示了包含有源CdSe纳米线和无源MoO3 NR的混合Fabry-Pérot腔,并且进一步证明了耦合来自其他有源纳米结构和荧光液体溶液的光的能力。这些光学特性使单个MoO3 NR成为吸引人的构件,成为微型光子电路和器件中的元素和互连体。

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