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Scattering attributes of one-dimensional semiconducting oxide nanomaterials individually probed for varying light-matter interaction angles

机译:一维半导体氧化物纳米材料的散射特性分别针对不同的光-物质相互作用角进行探测

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摘要

We report the characteristic optical responses of one-dimensional semiconducting oxide nanomaterials by examining the individual nanorods (NRs) of ZnO, SnO2, indium tin oxide, and zinc tin oxide under precisely controlled, light-matter interaction geometry. Scattering signals from a large set of NRs of the different types are evaluated spatially along the NR length while varying the NR tilt angle, incident light polarization, and analyzer rotation. Subsequently, we identify material-indiscriminate, NR tilt angle- and incident polarization-dependent scattering behaviors exhibiting continuous, intermittent, and discrete responses. The insight gained from this study can advance our fundamental understanding of the optical behaviors of the technologically useful nanomaterials and, at the same time, promote the development of highly miniaturized, photonic and bio-optical devices utilizing the spatially controllable, optical responses of the individual semiconducting oxide NRs.
机译:我们通过检查ZnO,SnO2,铟锡氧化物和锌锡氧化物的单个纳米棒(NR)在精确控制的光-质相互作用几何结构下,报告了一维半导体氧化物纳米材料的特征光学响应。在改变NR倾斜角,入射光偏振和分析仪旋转的同时,沿着NR长度在空间上评估了来自不同类型的大量NR的散射信号。随后,我们确定了显示连续,间歇和离散响应的,不区分材料,NR倾斜角和入射偏振的散射行为。从这项研究中获得的见解可以增进我们对技术上有用的纳米材料的光学行为的基本了解,同时,可以利用个体的空间可控光学响应来促进高度小型化的光子和生物光学器件的发展。半导体氧化物NR。

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