Department of Physics and Astronomy, University College London, Gower Street, London WC1E 6BT, UK.
Opt Lett. 2013 Jan 1;38(1):28-30. doi: 10.1364/OL.38.000028.
We present the result of an investigation into the optical trapping of spherical microparticles using laser beams with a spatially inhomogeneous polarization direction [cylindrical vector beams (CVBs)]. We perform three-dimensional tracking of the Brownian fluctuations in the position of a trapped particle and extract the trap spring constants. We characterize the trap geometry by the aspect ratio of spring constants in the directions transverse and parallel to the beam propagation direction and evaluate this figure of merit as a function of polarization angle. We show that the additional degree of freedom present in CVBs allows us to control the optical trap strength and geometry by adjusting only the polarization of the trapping beam. Experimental results are compared with a theoretical model of optical trapping using CVBs derived from electromagnetic scattering theory in the T-matrix framework.
我们展示了使用具有空间非均匀偏振方向的激光束(圆柱矢量光束)对球形微粒子进行光学捕获的研究结果。我们对捕获粒子位置的布朗涨落进行了三维跟踪,并提取了捕获的弹簧常数。我们通过沿光束传播方向横向和纵向的弹簧常数的纵横比来描述捕获几何形状,并评估了作为偏振角函数的这个性能指标。我们表明,CVB 中存在的附加自由度允许我们通过仅调整捕获光束的偏振来控制光学捕获的强度和几何形状。实验结果与基于 T 矩阵框架的电磁散射理论的 CVB 光学捕获的理论模型进行了比较。