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首页> 外文期刊>ACS nano >Gallium Phosphide Nanowires in a Free-Standing, Flexible, and Semitransparent Membrane for Large-Scale Infrared-to-Visible Light Conversion
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Gallium Phosphide Nanowires in a Free-Standing, Flexible, and Semitransparent Membrane for Large-Scale Infrared-to-Visible Light Conversion

机译:镓磷化纳米线在一个独立式,柔性,半透明膜中,用于大规模红外 - 可见光转换

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Engineering of nonlinear optical response in nanostructures is one of the key topics in nanophotonics, as it allows for broad frequency conversion at the nanoscale. Nevertheless, the application of the developed designs is limited by either high cost of their manufacturing or low conversion efficiencies. This paper reports on the efficient second-harmonic generation in a free-standing GaP nanowire array encapsulated in a polymer membrane. Light coupling with optical resonances and field confinement in the nanowires together with high nonlinearity of GaP material yield a strong second-harmonic signal and efficient near-infrared (800–1200 nm) to visible upconversion. The fabricated nanowire-based membranes demonstrate high flexibility and semitransparency for the incident infrared radiation, allowing utilizing them for infrared imaging, which can be easily integrated into different optical schemes without disturbing the visualized beam.
机译:纳米结构中的非线性光学响应的工程是纳米光源的关键主题之一,因为它允许在纳米级宽的频率转换。 然而,开发设计的应用受到其制造业的高成本或低转化效率的限制。 本文报告了封装在聚合物膜中的独立间隙纳米线阵列中的有效二次谐波产生。 与光学共振的光耦合和纳米线中的距离与间隙材料的高非线性一起产生强度的二次谐波信号和高效的近红外(800-1200nm),以可见上变化。 制造的基于纳米线的膜表现出对入射红外辐射的高柔韧性和半透明,允许它们用于红外成像,这可以容易地集成到不同的光学方案中而不干扰可视化光束。

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