论文标题

手性宿主培养基及其应用中介电微球的光学镊子理论

Theory of optical tweezing of dielectric microspheres in chiral host media and its applications

论文作者

Ali, Rfaqat, Dutra, R. S., Pinheiro, F. A., Rosa, F. S. S., Neto, P. A. Maia

论文摘要

我们首次报道了嵌入手性介质中的球形介电颗粒的光学镊子理论。我们开发了部分波(MIE)膨胀,以计算作用在用圆形高度浓缩激光束照亮的介电微球上的光学力。当选择具有相同介质的极化时,轴向陷阱的稳定性得到了提高,从而可以对高反射式索引颗粒进行扭转。当粒子通过外力置换轴时,其平衡位置通过光扭矩的机械效应围绕光轴旋转。当考虑半径比波长大几倍时,在存在手性宿主培养基的情况下,光扭矩和旋转角都大大增强。在此范围内,旋转角度在很大程度上取决于微球半径和宿主介质的手性参数,这为两个参数的定量表征开辟了道路。即使在天然发生的手性溶质的情况下,也可以预测可测量的角度,从而可以采用一种新型的全光学方法来局部探测纳米级的手性反应。

We report for the first time the theory of optical tweezers of spherical dielectric particles embedded in a chiral medium. We develop a partial-wave (Mie) expansion to calculate the optical force acting on a dielectric microsphere illuminated by a circularly-polarized, highly focused laser beam. When choosing a polarization with the same handedness of the medium, the axial trap stability is improved, thus allowing for tweezing of high-refractive-index particles. When the particle is displaced off-axis by an external force, its equilibrium position is rotated around the optical axis by the mechanical effect of an optical torque. Both the optical torque and the angle of rotation are greatly enhanced in the presence of a chiral host medium when considering radii a few times larger than the wavelength. In this range, the angle of rotation depends strongly on the microsphere radius and the chirality parameter of the host medium, opening the way for a quantitative characterization of both parameters. Measurable angles are predicted even in the case of naturally occurring chiral solutes, allowing for a novel all-optical method to locally probe the chiral response at the nanoscale.

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