Raziman T V, Martin Olivier J F
Opt Express. 2015 Jul 27;23(15):20143-57. doi: 10.1364/OE.23.020143.
We present a computational study of the internal optical forces arising in plasmonic gap antennas, dolmen structures and split rings. We find that very strong internal forces perpendicular to the propagation direction appear in these systems. These internal forces show a rich behaviour with varying wavelength, incident polarisation and geometrical parameters, which we explain in terms of the polarisation charges induced on the structures. Various interesting and anomalous features arise such as lateral force reversal, optical pulling force, and circular polarisation-induced forces and torques along directions symmetry-forbidden for orthogonal linear polarisations. Understanding these effects and mastering internal forces in plasmonic nanostructures will be instrumental in implementing new functionalities in these nanophotonic systems.
我们展示了对等离子体间隙天线、石棚结构和裂环中产生的内部光学力的计算研究。我们发现,在这些系统中会出现垂直于传播方向的极强内部力。这些内部力随波长、入射偏振和几何参数的变化呈现出丰富的行为,我们根据结构上感应的极化电荷对其进行了解释。出现了各种有趣和异常的特征,如横向力反转、光学拉力以及沿正交线性偏振对称禁止方向的圆偏振诱导力和扭矩。理解这些效应并掌握等离子体纳米结构中的内部力将有助于在这些纳米光子系统中实现新功能。