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Modal liquid crystal devices in optical tweezing: 3D control and oscillating potential wells

机译:光学镊子中的模态液晶装置:3D控制和振荡势阱

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摘要

We investigate the use of liquid crystal (LC) adaptive optics elements to provide full 3 dimensional particle control in an optical tweezer. These devices are suitable for single controllable traps, and so are less versatile than many of the competing technologies which can be used to control multiple particles. However, they have the advantages of simplicity and light efficiency. Furthermore, compared to binary holographic optical traps they have increased positional accuracy. The transmissive LC devices could be retro-fitted to an existing microscope system. An adaptive modal LC lens is used to vary the z-focal position over a range of up to 100 μm and an adaptive LC beam-steering device is used to deflect the beam (and trapped particle) in the x-y plane within an available radius of 10 μm. Furthermore, by modifying the polarisation of the incident light, these LC components also offer the opportunity for the creation of dual optical traps of controllable depth and separation. © 2006 Optical Society of America.
机译:我们研究了使用液晶(LC)自适应光学元件在光学镊子中提供完整的3维粒子控制。这些设备适用于单个可控捕集阱,因此与许多可用于控制多个粒子的竞争技术相比,通用性差。然而,它们具有简单和光效率的优点。此外,与二元全息光学陷阱相比,它们的定位精度更高。透射式LC设备可以改装为现有的显微镜系统。自适应模态LC透镜用于在最大100μm的范围内改变z焦点位置,自适应LC光束转向装置用于在xy平面内的可用半径内偏转光束(和捕获的粒子)。 10微米此外,通过修改入射光的偏振,这些LC组件还为创建深度和间距可控的双光阱提供了机会。 ©2006美国眼镜学会。

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