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Multiple dual-beam traps for three-dimensional position control of particles

机译:多个双束阱,用于粒子的三维位置控制

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We demonstrate an optical micromanipulation system that enables simultaneous trapping of a plurality of particles and interactive control of their trapping positions in three dimensions (3D). This functionality is achieved through the application of phase-only spatial light modulators (SLM) in a highly efficient generation of advanced counterpropagating-beam or dual-beam traps in an extended array. The array of counterpropagating-beam traps is composed of the s and p -polarized components of a dynamically reconfigurable intensity pattern created via the generalized phase contrast method. A power-preserving scheme using a spatial polarization modulator (SPM) allows us to vary the relative strengths of the two orthogonal polarizations thereby controlling the axial trap positions of the particles. Experimental results show the interactive manipulation of polystyrene microspheres in 3D achieving a dynamic range in axial position control as large as 20μm.
机译:我们演示了一种光学显微操作系统,该系统能够同时捕获多个粒子并在三个维度(3D)中交互控制其捕获位置。通过仅相位空间光调制器(SLM)的应用,可以在扩展阵列中高效生成高级的反向传播光束或双光束陷阱,从而实现此功能。反向传播束阱的阵列由通过广义相衬法创建的动态可重构强度模式的s和p极化分量组成。使用空间极化调制器(SPM)的功率保存方案使我们能够改变两个正交极化的相对强度,从而控制粒子的轴向捕获位置。实验结果表明,以3D方式对聚苯乙烯微球进行交互操作可在轴向位置控制中实现高达20μm的动态范围。

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