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Lateral optical forces on two chiral nanospheres in plane waves of linear polarization

机译:在线偏振平面波上的两个手性纳米中的横向光学力

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Based on the Maxwell stress tensor method and the full wave simulations, we show that a lateral optical force (LOF) can be induced on a pair of spherical nanoparticles with different chiral combinations under the illumination of plane waves with the linear polarization either parallel or normal to the axis of the two nanospheres. It is demonstrated that the LOF can appear on each particle in the direction perpendicular to the particles' axis and the light propagation when either one or two particles have the chirality. Such an LOF can be tailored by both the magnitude and handedness of the particle chirality as well as the incident linear polarizations. Using the analytical expression of optical forces based on the dipole approximation, the physical origin of the LOF can be traced to many channels, including the gradient force, the radiation force, the curl force, and the spin force due to the inter-particle interaction mediated by the light. Our results might find applications in chiral discrimination such as chiral molecular and biological cells.
机译:基于麦克斯韦应力张量方法和全波模拟,我们表明,横向光学力(LOF)可以在一对球形纳米颗粒上引起具有不同手性组合的横向组合,在平面波的照明下,线性偏振是平行的或正常的到两个纳米球的轴线。据证明,当一个或两个颗粒具有手性时,LOF可以在垂直于颗粒轴的方向上出现在每个颗粒上的每个颗粒和光传播。这种LOF可以通过颗粒手术的幅度和手性以及入射的线性偏振来定制。使用基于偶极近似的光力的分析表达,因此可以将LOF的物理来源追踪到许多通道,包括梯度力,辐射力,卷曲力和由于颗粒间相互作用而产生的旋转力被光介导的。我们的结果可能会在手性歧视中找到诸如手性分子和生物细胞的手性歧视的应用。

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