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A versatile system for optical manipulation experiments

机译:用于光学操作实验的多功能系统

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In this paper a versatile experimental system for optical levitation is presented. Microscopic liquid droplets are produced on demand from piezo-electrically driven dispensers. The charge of the droplets is controlled by applying an electric field on the piezo-dispenser head. The dispenser releases droplets into a vertically focused laser beam. The size and position in 3 dimensions of trapped droplets are measured using two orthogonally placed high speed cameras. Alternatively, the vertical position is determined by imaging scattered light onto a position sensitive detector. The charge of a trapped droplets is determined by recording its motion when an electric field is applied, and the charge can be altered by exposing the droplet to a radioactive source or UV light. Further, spectroscopic information of the trapped droplet is obtained by imaging the droplet on the entrance slit of a spectrometer. Finally, the trapping cell can be evacuated, allowing investigations of droplet dynamics m vacuum. The system is utilized to study a variety of physical phenomena, and three pilot experiments are given in this paper. First, a system used to control and measure the charge of the droplet is presented. Second, it is demonstrated how particles can be made to rotate and spin by trapping them using optical vortices. Finally, the Raman spectra of trapped glycerol droplets are obtained and analyzed. The long term goal of this work is to create a system where interactions of droplets with the surrounding medium or with other droplets can be studied with full control of all physical variables.
机译:本文提出了一种通用的光学悬浮实验系统。压电驱动的分配器可根据需要产生微小的液滴。液滴的电荷通过在压电分配器头上施加电场来控制。分配器将液滴释放到垂直聚焦的激光束中。使用两个正交放置的高速相机测量3维捕获的液滴的大小和位置。或者,通过将散射光成像到位置敏感检测器上来确定垂直位置。被捕获的液滴的电荷通过记录施加电场时其运动来确定,并且可以通过将液滴暴露于放射源或紫外线来改变电荷。此外,通过在光谱仪的入口狭缝上对液滴成像来获得所捕获的液滴的光谱信息。最后,可以抽空捕集池,从而在真空中研究液滴动态。该系统用于研究各种物理现象,并给出了三​​个试验性实验。首先,提出了一种用于控制和测量液滴电荷的系统。其次,展示了如何通过使用光学涡旋捕获粒子,使粒子旋转和旋转。最后,获得并分析了捕获的甘油液滴的拉曼光谱。这项工作的长期目标是创建一个系统,在其中可以完全控制所有物理变量来研究液滴与周围介质或其他液滴的相互作用。

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