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Interactions between spherical nanoparticles optically trapped in Laguerre-Gaussian modes

机译:以拉盖尔-高斯模式光学捕获的球形纳米粒子之间的相互作用

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摘要

When a Laguerre-Gaussian (LG) laser mode is used to trap nanoparticles, the spatial disposition of the particles about the beam axis is determined by a secondary mechanism that engages the input radiation with the interparticle potential. This analysis, based on the identification of a range-dependent laser-induced energy shift, elicits and details features that arise for spherical nanoparticles irradiated by a LG mode. Calculations of the absolute minima are performed for LG beams of variable topological charge, and the results are displayed graphically. It is shown that more complex ordered structures emerge on extension to three-and four-particle systems and that similar principles will apply to other kinds of radially structured optical mode.
机译:当使用拉格高斯(Laguerre-Gaussian)(LG)激光模式捕获纳米粒子时,粒子围绕束轴的空间布置由将输入辐射与粒子间电势结合的辅助机制确定。基于对与范围相关的激光诱导的能量转移的识别,该分析得出并详述了由LG模式照射的球形纳米颗粒的特征。对具有可变拓扑电荷的LG光束执行绝对最小值的计算,并以图形方式显示结果。结果表明,在扩展到三粒子和四粒子系统时会出现更复杂的有序结构,并且类似的原理将适用于其他类型的径向结构光学模式。

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