首页> 外文会议>International Conference on Correlation Optics; 20030916-20030919; Chernivtsi; UA >Design and implementation of optical tweezers arrays using diffractive optical elements
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Design and implementation of optical tweezers arrays using diffractive optical elements

机译:使用衍射光学元件的光镊阵列的设计与实现

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Although optical tweezers have been a valuable research tool since their invention in the 1980s, they have remained limited for many years to trapping only one particle per laser beam. One of the most exciting developments in optical tweezers in recent years has been the creation of two- and three-dimensional arrays of optical traps by using diffractive optical elements (DOEs). We have developed our own algorithms and codes to design phase DOEs that can transform a single laser beam into an array of independent traps, each with individually specified characteristics, arranged in various geometrical configurations. The DOEs were fabricated by means of e-beam lithography in PMMA and recently were implemented in computer addressed liquid crystal spatial modulators. This allows us to control the configuration of the optical tweezers almost in real time. Experimental results presented in this paper show trapping and manipulation of multiple silica micro-spheres immersed in water. The trapped particles are moved independently along the x-y-z directions and rotated along circular trajectories with different angular velocities.
机译:尽管自1980年代发明以来,光镊一直是一种有价值的研究工具,但多年来,它们一直仅限于每个激光束捕获一个粒子。近年来,光镊中最令人激动的发展之一就是通过使用衍射光学元件(DOE)来创建二维和三维陷波器阵列。我们已经开发了自己的算法和代码来设计相位DOE,这些DOE可以将单个激光束转换成独立的陷阱阵列,每个陷阱具有各自指定的特性,并以各种几何结构排列。 DOE是通过PMMA中的电子束光刻技术制造的,最近在计算机寻址的液晶空间调制器中实现。这使我们几乎可以实时控制光镊的配置。本文提出的实验结果表明,浸没和处理了多个浸入水中的二氧化硅微球。被捕获的粒子沿x-y-z方向独立移动,并沿具有不同角速度的圆形轨迹旋转。

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