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使用光镊对单个手性纳米颗粒进行对映选择性操控。

Enantioselective manipulation of single chiral nanoparticles using optical tweezers.

作者信息

Ali Rfaqat, Pinheiro Felipe A, Dutra Rafael S, Rosa Felipe S S, Maia Neto Paulo A

机构信息

Instituto de Física, Universidade Federal do Rio de Janeiro, Caixa Postal 68528, Rio de Janeiro, RJ 21941-972, Brazil.

LISComp-IFRJ, Instituto Federal de Educação, Ciência e Tecnologia, Rua Sebastião de Lacerda, Paracambi, RJ 26600-000, Brazil.

出版信息

Nanoscale. 2020 Feb 27;12(8):5031-5037. doi: 10.1039/c9nr09736h.

Abstract

We put forward an enantioselective method for chiral nanoparticles using optical tweezers. We demonstrate that the optical trapping force in a typical, realistic optical tweezing setup with circularly-polarized trapping beams is sensitive to the chirality of core-shell nanoparticles, allowing for efficient enantioselection. It turns out that the handedness of the trapped particles can be selected by choosing the appropriate circular polarization of the trapping beam. The chirality of each individual trapped nanoparticle can be characterized by measuring the rotation of the equilibrium position under the effect of a transverse Stokes drag force. We show that the chirality of the shell gives rise to an additional twist, leading to a strong enhancement of the optical torque driving the rotation. Both methods are shown to be robust against variations of size and material parameters, demonstrating that they are particularly useful in (but not restricted to) several situations of practical interest in chiral plasmonics, where enantioselection and characterization of single chiral nanoparticles, each and every one with its unique handedness and optical properties, are in order. In particular, our method could be employed to unveil the chiral response arising from disorder in individual plasmonic raspberries, synthesized by close-packing a large number of metallic nanospheres around a dielectric core.

摘要

我们提出了一种使用光镊对纳米粒子进行对映选择性的方法。我们证明,在具有圆偏振捕获光束的典型、实际光镊装置中,光捕获力对核壳纳米粒子的手性敏感,从而实现高效的对映体选择。结果表明,通过选择捕获光束的适当圆偏振,可以选择被捕获粒子的手性。每个被捕获的纳米粒子的手性可以通过测量在横向斯托克斯拖曳力作用下平衡位置的旋转来表征。我们表明,壳层的手性会产生额外的扭转,从而导致驱动旋转的光扭矩大幅增强。这两种方法都被证明对尺寸和材料参数的变化具有鲁棒性,表明它们在(但不限于)手性等离子体中几种实际感兴趣的情况下特别有用,在这些情况下,对单个具有独特手性和光学性质的手性纳米粒子进行对映体选择和表征是必要的。特别是,我们的方法可用于揭示由无序引起的手性响应,这种无序存在于通过在介电核周围紧密堆积大量金属纳米球合成的单个等离子体覆盆子中。

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