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Nanostructure-enhanced laser tweezers for efficient trapping and alignment of particles

机译:纳米结构增强的激光镊子可有效捕获和对准颗粒

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摘要

We propose and demonstrate a purely optical approach to trap and align particles using the interaction of polarized light with periodic nanostructures to generate enhanced trapping force. With a weakly focused laser beam, we observed efficient trapping and transportation of polystyrene beads with sizes ranging from 10 μm down to 190 nm as well as cancer cell nuclei. In addition, alignment of non-spherical dielectric particles to a 1-D periodic nanostructure was achieved with low laser intensity without attachment to birefringent crystals. Bacterial cells were trapped and aligned with incident optical intensity as low as 17 μW/μm2.
机译:我们提出并证明了一种纯粹的光学方法,可以利用偏振光与周期性纳米结构的相互作用来捕获和对齐粒子,以产生增强的捕获力。使用弱聚焦激光束,我们观察到有效捕获和运输尺寸从10μm到190 nm的聚苯乙烯珠以及癌细胞核。此外,在不附着双折射晶体的情况下,以低激光强度实现了非球形介电粒子与一维周期性纳米结构的对准。捕获细菌细胞并使其入射光强度低至17μW/μm 2

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