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Dynamically reconfigurable interferometric optical tweezers: Tailoring 3D colloidal lattices and tunable micromachines

机译:动态可重新配置干涉光学镊子:剪裁3D胶体晶格和可调谐微机器

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Real-time controlled manipulation of microparticles optically trapped in three dimensional (3D)-trap array lattices generated by dynamically reconfigurable phase engineered non-coplanar multiple plane wave interference in an umbrella-like beam geometry is presented. Reconfigurable stable 3D interferometric optical tweezers belonging to diverse transverse rotational symmetry are realized and used to trap micrometer sized silica beads to build colloidal lattices. Further, in addition to dynamically controlled translation of trapped array of particles, rotation of intertwined helically-stacked microparticles assemblies as real-time tunable light-driven micromachines is also presented.
机译:呈现通过动态可重构的相位工程的非共面非共面多平面波干扰的三维(3D)-trap阵列格子的实时控制操作。 实现具有不同横向旋转对称性的可重新配置的稳定3D干涉光学镊子,并用于将微米尺寸的二氧化硅珠捕获以构建胶体晶格。 此外,除了动态控制捕获颗粒阵列的翻译之外,还呈现了交织螺旋堆叠的微粒组件作为实时可调光的微磁体的旋转。

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