论文标题

耦合手性颗粒中的光学力

Optical Forces in Coupled Chiral Particles

论文作者

Wo, Kah Jen, Peng, Jie, Prasad, Madhava Krishna, Shi, Yuzhi, Li, Jensen, Wang, Shubo

论文摘要

结构性手性可以诱导固有的对称特性引起的违反直觉的光学力。虽然对雷利态度的单手性粒子上的光学作用进行了充分的研究,但耦合手性颗粒中的光学作用仍然较少探索。通过使用源表示和耦合模式理论的全波数值模拟和分析方法,我们研究了通过平面波在两个手性粒子上通过近代近乎近乎近距离耦合的两个手性颗粒诱导的光学力。我们发现,手性颗粒的诱导的电和磁偶极子具有复杂的耦合,从而产生深色和明亮的模式。颗粒之间的相互作用能力可以具有吸引力或排斥,并且共振模式可以显着增强其幅度。如果两个粒子与相同的手相比,则吸引力要强得多。电偶极力和磁性偶极力具有相同的两个粒子的符号相同的符号,而它们的两个颗粒的符号不同。结果可能会使手性诱导的光学力更好地理解,并在光学操纵和手性光 - 物质相互作用中使用潜在的应用。

Structural chirality can induce counter-intuitive optical forces due to inherent symmetry properties. While optical forces on a single chiral particle in the Rayleigh regime have been well studied, optical forces in coupled chiral particles remain less explored. By using full-wave numerical simulations and analytical methods of source representation and coupled mode theory, we investigated the optical forces induced by a plane wave on two chiral particles coupling with each other via the evanescent near fields. We found that the induced electric and magnetic dipoles of the chiral particles have complicated couplings that give rise to dark and bright modes. The interaction force between the particles can be either attractive or repulsive, and its magnitude can be significantly enhanced by the resonance modes. The attractive force is much stronger if two particles are of opposite handedness compared with the case of same handedness. The electric dipole force and the magnetic dipole force have the same sign for two particles with the same handedness, while they are of different signs for two particles with opposite handedness. The results can lead to a better understanding of chirality-induced optical forces with potential applications in optical manipulations and chiral light-matter interactions.

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