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Optical tweezing beam control using liquid crystal adaptive optical elements

机译:光学镊束光束控制使用液晶自适应光学元件

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摘要

Liquid crystal (LC) adaptive optical elements are described, which provide an alternative to existing micropositioning technologies in optical tweezing. A full description of this work is given in [1]. An adaptive LC prism supplies tip/tilt to the phase profile of the trapping beam, giving rise to an available steering radius within the x-y plane of 10 μm. Additionally, a modally addressed adaptive LC lens provides defocus, offering a z-focal range for the trapping site of 100 μm. The result is full three-dimensional positional control of trapped particle(s) using a simple and wholly electronic control system. Compared to competing technologies, these devices provide a lower degree of controllability, but have the advantage of simplicity, cost and light efficiency. Furthermore, due to their birefringence, LC elements offer the opportunity of the creation of dual optical traps with controllable depth and separation.
机译:描述了液晶(LC)自适应光学元件,其提供了在光学镊子中的现有微定位技术的替代方案。 [1]给出了这项工作的完整描述。自适应LC棱镜供应尖/倾斜到捕获光束的相轮廓,从10μm的x-y平面内产生可用的转向半径。另外,模型寻址的自适应LC透镜提供散焦,为捕获部位提供100μm的Z焦距。结果是使用简单和全电子控制系统的捕获粒子的全三维位置控制。与竞争技术相比,这些器件提供了较低的可控性,但具有简单,成本和光效的优点。此外,由于它们的双折射,LC元素提供了创建双光学陷阱的机会,具有可控深度和分离。

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