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首页> 外文期刊>Physical Review, A >Optical trapping by Laguerre-Gaussian beams: Far-field matching, equilibria, and dynamics
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Optical trapping by Laguerre-Gaussian beams: Far-field matching, equilibria, and dynamics

机译:Laguerre-Gaussian梁的光学诱捕:远场匹配,均衡和动态

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摘要

By using the method of far-field matching we obtain the far-field expressions for the optical (radiation) force exerted by Laguerre-Gaussian (LG) light beams on a spherical (Mie) particle and study the optical-force-induced dynamics of the scatterer near the trapping points represented by the equilibrium (zero-force) positions. The regimes of linearized dynamics are described in terms of the stiffness matrix spectrum and the damping constant of the ambient medium. Numerical analysis is performed for both nonvortex and optical-vortex LG beams. For the purely azimuthal LG beams, the dynamics is found to be locally nonconservative and is characterized by the presence of conditionally stable equilibria (unstable zero-force points that can be stabilized by the ambient damping). We also discuss effects related to the Mie resonances (maxima of the internal field Mie coefficients) that under certain conditions manifest themselves as the points changing the trapping properties of the particles.
机译:通过使用远场的方法,我们获得由Laguerre-Gaussian(LG)光束上的光学(MIE)粒子上的光学(辐射)力的远场表达式,并研究了光力诱导的动态 捕获点附近的捕获点由平衡(零力)位置表示。 在刚度矩阵光谱和环境介质的阻尼常数方面描述了线性化动力学的制度。 对非Vortex和光学涡流LG梁进行数值分析。 对于纯粹的方位角LG光束,发现动力学被发现是局部非必需的,其特征在于存在条件稳定的平衡(可以通过环境阻尼稳定的不稳定零力点)。 我们还讨论了与MIE共振(内部场MIE系数的最大值)相关的效果,其在某些条件下表现为改变颗粒的捕获性质的点。

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