Chen Hao, Toussaint K C
Opt Express. 2014 Mar 24;22(6):6653-60. doi: 10.1364/OE.22.006653.
The 2D optical trapping ability of larger-than average-particles is compared for three different beam types: a flat-top, a Gaussian beam, and a donut shaped beam. Optical force-displacement curves are calculated in four different size regimes of particle diameters (1.5-20 μm). We find that the trapping efficiency increases linearly with ratio of particle diameter to wavelength for all three beams. As the ratio reaches a specific threshold value, the flat-top focus exhibits the largest trapping efficiency compared to the other two beam types. We experimentally demonstrate that flat-top focusing provides the largest transverse trapping efficiency for particles as large as 20 μm in diameter for our given experimental conditions. The overall trend in our experimental results follows that observed in our simulation model. The results from this study could facilitate light manipulation of large particles.
比较了三种不同光束类型(平顶光束、高斯光束和环形光束)对大于平均尺寸粒子的二维光学捕获能力。在四种不同粒径范围(1.5 - 20μm)下计算了光力 - 位移曲线。我们发现,对于所有三种光束,捕获效率均随粒径与波长之比呈线性增加。当该比值达到特定阈值时,与其他两种光束类型相比,平顶焦点展现出最大的捕获效率。我们通过实验证明,在给定实验条件下,平顶聚焦对于直径达20μm的粒子提供了最大的横向捕获效率。我们实验结果的总体趋势与模拟模型中观察到的一致。本研究结果有助于对大粒子进行光操控。