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全光手性敏感分选通过干涉场中的可逆横向力。

All-Optical Chirality-Sensitive Sorting via Reversible Lateral Forces in Interference Fields.

机构信息

Graduate School for Integrative Sciences and Engineering, National University of Singapore , Centre for Life Sciences (CeLS), #05-01, 28 Medical Drive, Singapore 117456, Singapore.

Department of Electrical and Computer Engineering and #Department of Biomedical Engineering, National University of Singapore , 4 Engineering Drive 3, Singapore 117583, Singapore.

出版信息

ACS Nano. 2017 Apr 25;11(4):4292-4300. doi: 10.1021/acsnano.7b01428. Epub 2017 Apr 5.

DOI:10.1021/acsnano.7b01428
PMID:28365986
Abstract

Separating substances by their chirality faces great challenges as well as opportunities in chemistry and biology. In this study, we propose an all-optical solution for passive sorting of chiral objects using chirality-dependent lateral optical forces induced by judiciously interfered fields. First, we investigate the optical forces when the chiral objects are situated in the interference field formed by two plane waves with arbitrary polarization states. When the plane waves are either linearly or circularly polarized, nonzero lateral forces are found at the particle's trapping positions, making such sideways motions observable. Although the lateral forces have different magnitudes on particles with different chirality, their directions are the same for opposite handedness particles, rendering it difficult to separate the chiral particles. We further solve the sorting problem by investigating more complicated polarization states. Finally, we achieve the chiral-selective separation by illuminating only one beam toward the chiral substance situated at an interface between two media, taking advantage of the native interference between the incident and reflective beams at the interface. Our study provides a robust and insightful approach to sort chiral substances and biomolecules with plausible optical setups.

摘要

在手性物质的分离方面,化学和生物学既面临挑战,也充满机遇。在这项研究中,我们提出了一种使用巧妙干涉场诱导的手性相关侧向光学力对手性物体进行无源分类的全光学解决方案。首先,我们研究了手性物体位于具有任意偏振态的两平面波形成的干涉场中时的光学力。当平面波为线偏振或圆偏振时,在手性物体的捕获位置会发现非零的侧向力,使得这种侧向运动可以被观察到。尽管具有不同手性的粒子所受的侧向力大小不同,但对于相反手性的粒子,其方向是相同的,这使得难以分离手性粒子。我们通过研究更复杂的偏振态进一步解决了分类问题。最后,我们通过仅照亮位于两种介质界面处的手性物质的一个光束来实现手性选择性分离,利用界面处入射和反射光束之间的固有干涉。我们的研究为使用可行的光学装置对手性物质和生物分子进行分类提供了一种稳健且有见地的方法。

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