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Gearing up for optical microrobotics: micromanipulation and actuation of synthetic microstructures by optical forces

机译:为光学微机器人做准备:通过光学力显微操作和合成微结构的驱动

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摘要

Optics is usually integrated into robotics as part of intelligent vision systems. At the microscale, however, optical forces can cause significant acceleration and so optical trapping and optical manipulation can enable the noncontact actuation of microcomponents. Microbeads are ubiquitous optically actuated structures, from Ashkin's pioneering experiments with polystyrene beads to contemporary functionalized beads for biophotonics. However, micro- and nanofabrication technologies are yielding a host of novel synthetic structures that promise alternative functionalities and new exciting applications. Recent works on the actuation of synthetic microstructures using optical trapping and optical manipulation are examined in this review. Extending the optical actuation down to the nanoscale is also presented, which can involve either direct manipulation of nanostructures or structure-mediated approaches where the nanostructures form part of larger structures that are suitable for interfacing with diffraction-limited optical fields.
机译:光学通常作为智能视觉系统的一部分集成到机器人技术中。然而,在微尺度上,光学力会引​​起明显的加速度,因此光学捕获和光学操纵可以实现微组件的非接触式致动。微珠是无处不在的光学驱动结构,从Ashkin的聚苯乙烯珠的开创性实验到当代的用于生物光子学的功能化珠。然而,微细加工和纳米加工技术正在产生许多新颖的合成结构,这些结构有望提供替代功能和新的令人兴奋的应用程序。在这篇综述中,我们研究了利用光阱和光学操纵驱动合成微结构的最新工作。还介绍了将光学驱动作用扩展到纳米级,这可以涉及直接操纵纳米结构或结构介导的方法,其中纳米结构形成较大结构的一部分,适合与衍射受限的光场对接。

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