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Spinning nanorods - active optical manipulation of semiconductor nanorods using polarised light

机译:纺纳米棒光学操纵——活跃半导体纳米棒使用偏振光

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In this letter we show how a single beam optical trap offers the means for three-dimensional manipulation of semiconductor nanorods in solution. Furthermore rotation of the direction of the electric field provides control over the orientation of the nanorods, which is shown by polarisation analysis of two photon induced fluorescence. Statistics over tens of trapped agglomerates reveal a correlation between the measured degree of polarisation (DLP) and the size of the agglomerate which was determined by the escape frequency and the intensity of the emitted fluorescence. We estimate that we have trapped agglomerates with a volume of close to 10 times the volume of a single nanorod, which exhibited DLPs as high as 52%.
机译:在这封信中,我们展示了一束光圈闭提供了三维的方法半导体纳米棒的操纵解决方案。的电场提供了控制取向的纳米棒,所示两个光子诱导分化的分析荧光。团聚体之间的相关性测量程度的分化(DLP)和团块的大小所决定的逃跑的频率和强度发出荧光。被困的团聚体的体积接近10乘以一个奈米棒的体积,也展出dlp高达52%。

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