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Nonlinear force dependence on optically bound micro-particle arrays in the evanescent fields of fundamental and higher order microfibre modes

机译:在基本和高阶微纤维模式的van逝场中,非线性力对光学结合的微粒阵列的依赖性

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摘要

Particles trapped in the evanescent field of an ultrathin optical fibre interact over very long distances via multiple scattering of the fibre-guided fields. In ultrathin fibres that support higher order modes, these interactions are stronger and exhibit qualitatively new behaviour due to the coupling of different fibre modes, which have different propagation wave-vectors, by the particles. Here, we study one dimensional longitudinal optical binding interactions of chains of 3 μm polystyrene spheres under the influence of the evanescent fields of a two-mode microfibre. The observation of long-range interactions, self-ordering and speed variation of particle chains reveals strong optical binding effects between the particles that can be modelled well by a tritter scattering-matrix approach. The optical forces, optical binding interactions and the velocity of bounded particle chains are calculated using this method. Results show good agreement with finite element numerical simulations. Experimental data and theoretical analysis show that higher order modes in a microfibre offer a promising method to not only obtain stable, multiple particle trapping or faster particle propulsion speeds, but that they also allow for better control over each individual trapped object in particle ensembles near the microfibre surface.
机译:通过光纤导引场的多次散射,捕获在超薄光纤the逝场中的粒子会在很长的距离上相互作用。在支持更高阶模的超薄光纤中,这些相互作用更强,并且由于粒子耦合不同的光纤模(具有不同的传播波矢量)而表现出质的新行为。在这里,我们研究了在双模微纤维的渐逝场的影响下3μm聚苯乙烯球链的一维纵向光学键合相互作用。对粒子链的长程相互作用,自排序和速度变化的观察表明,粒子之间具有很强的光学结合效果,可以通过三重散射矩阵方法很好地模拟它们。使用这种方法可以计算出光学力,光学结合相互作用和结合的粒子链的速度。结果表明与有限元数值模拟吻合良好。实验数据和理论分析表明,微纤维中的高阶模不仅提供了一种有前途的方法,不仅可以获得稳定的多重粒子捕集或更快的粒子推进速度,而且还可以更好地控制粒子团附近的每个单个捕集物体。超细纤维表面。

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