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Optical binding between polar particles

机译:极性粒子之间的光学结合

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Optical binding is a phenomenon that is exhibited by micro-and nano-particulate systems, suitably irradiated with off-resonance laser light. Recent quantum electrodynamical studies have shown that the optomechanical effect owes its origin to a radiative intervention with the Casimir-Polder dispersion force. The potential energy surfaces for optically induced inter-particle coupling reveal unexpected features of considerable intricacy, and when several particles are present, the effect can result in the formation of geometrically varied non-contact assemblies. In general, previous studies have been restricted to considering only the dynamic electromagnetic coupling between particles, where the latter are considered to be non-polar and centrosymmetric. However, when optical binding between non-polar particles takes place, other forms of interaction need to be entertained - more especially so, since any presence of a permanent dipole moment necessarily also admits a non-zero hyperpolarizability. Consequently, amongst the static contributions to the interaction between any pair of particles, a coupling between the electric dipole of one and the hyperpolarizability of the other must also be considered. In this paper we study these static contributions to the overall optical binding, comparing their effect with other inter-particle interactions, particularly the prominent electric dipole-dipole coupling. The results suggest that static coupling between polar particles can significantly modify the observed optical binding.
机译:光学结合是由微米和纳米微粒系统表现出的现象,适合用非共振激光照射。最近的量子电动力学研究表明,光机械效应的产生源于卡西米尔-波尔德色散力的辐射干预。用于光学诱导的粒子间耦合的势能表面显示出相当复杂的出乎意料的特征,并且当存在多个粒子时,该效应可能导致形成几何变化的非接触组件。通常,先前的研究仅限于仅考虑粒子之间的动态电磁耦合,而后者被认为是非极性且是中心对称的。然而,当在非极性粒子之间发生光学结合时,需要考虑其他形式的相互作用-更特别地,因为任何永久性偶极矩的存在也必定会导致非零超极化性。因此,在对任何一对粒子之间相互作用的静态贡献中,还必须考虑一个电偶极子和另一个电偶极子的超极化性之间的耦合。在本文中,我们研究了这些对整体光学结合的静态贡献,并将它们与其他粒子间相互作用(尤其是突出的电偶极-偶极耦合)的作用进行了比较。结果表明极性粒子之间的静态耦合可以显着改变观察到的光学结合。

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