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Non-resonant Mie scattering: Emergent optical properties of core-shell polymer nanowires

机译:非共振米氏散射:核-壳聚合物纳米线的新兴光学性质

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摘要

We provide the in-depth characterization of light-polymer nanowire interactions in the context of an effective Mie scattering regime associated with low refractive index materials. Properties of this regime sharply contrast with these of resonant Mie scattering, and involve the formation of strictly forward-scattered and coupling-free optical fields in the vicinity of core-shell polymer nanowires. Scattering from these optical fields is shown to be non-resonant in nature and independent from incident polarization. In order to demonstrate the potential utility of this scattering regime in one-dimensional (1D) polymeric nanostructures, we fabricate polycarbonate (PC) - polyvinylidene difluoride (PVDF) core-shell nanowires using a novel iterative thermal drawing process that yields uniform and indefinitely long core-shell nanostructures. These nanowires are successfully engineered for novel nanophotonics applications, including size-dependent structural coloration, efficient light capture on thin-film solar cells, optical nano-sensors with ultrahigh sensitivity and a mask-free photolithography method suitable for the straightforward production of 1D nanopatterns.
机译:我们在与低折射率材料相关的有效Mie散射机制的背景下,提供了光-聚合物纳米线相互作用的深入表征。该状态的性质与共振米氏散射的性质形成鲜明对比,并涉及在核-壳聚合物纳米线附近形成严格的前向散射和无耦合光场。这些光场的散射本质上是非共振的,并且与入射偏振无关。为了证明此散射机制在一维(1D)聚合物纳米结构中的潜在用途,我们使用新颖的迭代热拉伸工艺制造聚碳酸酯(PC)-聚偏二氟乙烯(PVDF)核壳纳米线,该工艺可产生均匀且无限长的核-壳纳米结构。这些纳米线已成功设计用于新型纳米光子学应用,包括尺寸依赖的结构着色,薄膜太阳能电池上的有效光捕获,具有超高灵敏度的光学纳米传感器以及适用于直接生产一维纳米图案的无掩模光刻技术。

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