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Development of a microhand using direct laser writing for indirect optical manipulation

机译:利用直接激光写入进行间接光学操作的微手的开发

摘要

In this paper, we propose manipulation ability extension of the optical tweezers by developing microhands, which are to use as end-effectors of the laser beam. First, three different 3D micro-scale handles are designed, then manufactured by the two-photon polymerization method with nano-scale resolution of 100 nm. Second, printed microhands are manipulated by multi-spot laser beam which traps and manipulates numerous objects simultaneously. Third, where direct trapping of the target object is not possible due to target objects' features such as size, shape, material, index of refraction, etc., indirect manipulation of the target microobjects is achieved by using the microhands as an extension of optical tweezers. Finally, three different microhand designs are compared in terms of speed and success rate. Furthermore, suitability of different shapes of microhandles against common usage of spherical shape is discussed.
机译:在本文中,我们提出了通过发展微手来扩展光镊的操纵能力的方法,这些手将用作激光束的末端执行器。首先,设计了三种不同的3D微米级手柄,然后通过双光子聚合方法制造,纳米级分辨率为100 nm。其次,通过多点激光束操纵印刷的微型手,该多点激光束同时捕获和操纵许多物体。第三,在由于目标物体的特征(例如大小,形状,材料,折射率等)而无法直接捕获目标物体的情况下,可以通过使用微型手作为光学扩展来间接操纵目标微型物体。镊子。最后,比较了三种不同的微型指针设计的速度和成功率。此外,讨论了不同形状的微手柄对球形的普遍使用的适用性。

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    Avci E; Yang GZ;

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  • 年度 2016
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