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Trapping and controlled rotation of low-refractive-index particles using dual line optical tweezers

机译:使用双线光学镊子捕获和控制低折射率粒子的旋转

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摘要

We show that dual line optical tweezers provides a convenient and dynamically reconfigurable approach for trapping and transport of low refractive index microscopic particles. By varying the spacing between the two line tweezers, particles of varying sizes could be trapped. Further, simultaneous rotation of the dual line tweezers could be used for controlled rotation of the trapped low-index particles. The transverse trapping force and the efficiency of the trap measured along the direction perpendicular to the line tweezers are in very good agreement with the theoretically estimated value.
机译:我们表明,双线光学镊子为捕获和运输低折射率微观粒子提供了一种方便且动态可重构的方法。通过改变两个线形镊子之间的间距,可以捕获大小不同的颗粒。此外,双线镊子的同时旋转可用于控制所捕获的低折射率颗粒的旋转。沿垂直于线镊的方向测得的横向捕获力和阱的效率与理论估计值非常吻合。

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