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Manipulate and detect the rotation speed of particles simultaneously using perfect vortex

机译:使用完美的涡旋同时操纵和检测颗粒的转速

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Optical vortex is a kind of unique structure light with a helical phase distribution and contains orbital angular momentum. It has been found a myriad of important applications of optical vortex, such as micromanipulation, remote sensing and communication. In recent years, there are many researches on the particle manipulation based on the orbital angular momentum of optical vortex. Especially, there is a new kind of optical vortex which is so-called "perfect" vortex whose ring radius is independent of its topological charge has an outstanding performance on the micromanipulation. However, the exist experiments can only realize manipulation of particle and the rotation speed is difficult to obtain. In this paper, we proposed a new scheme which can manipulate the particle and simultaneously detect its rotation speed. We employ the superposition perfect vortex as the probe beam. It is worth to note that the topological charge of the perfect vortex we used has an opposite sign and different magnitude. Therefore, the probe beam possesses remaining orbital angular momentum and can generate the rotational Doppler effect. The rotational Doppler effect is the basics of rotation speed detection. A corresponding experiment has been conducted to verify our method. The results have confirmed the existence of orbital angular momentum of superposition optical vortex with different topological charge. Our scheme can realize manipulation and detection the rotation speed of the particle simultaneously. It is an important supplement on the micromanipulation and maybe useful in the optical gyroscope technique.
机译:光学涡流是一种独特的结构光,具有螺旋相分布,含有轨道角动量。已经发现了光学涡旋的重要应用,例如微操纵,遥感和通信。近年来,基于光学涡流的轨道角动量的粒子操纵存在许多研究。特别是,存在一种新型光学涡旋,其如所谓的“完美”涡旋,其环形半径与其拓扑电荷无关,在微操纵中具有出色的性能。然而,存在实验只能实现颗粒的操纵,并且难以获得旋转速度。在本文中,我们提出了一种可以操纵颗粒并同时检测其转速的新方案。我们采用叠加完美的漩涡作为探针光束。值得注意的是,我们使用的完美涡旋的拓扑电荷具有相反的标志和不同的幅度。因此,探针光束具有剩余的轨道角动量,并且可以产生旋转多普勒效应。旋转多普勒效应是转速检测的基础知识。已经进行了相应的实验以验证我们的方法。结果证实了具有不同拓扑电荷的叠加光涡旋轨道角动量的存在。我们的方案可以实现操纵并同时检测粒子的转速。它是微操纵的重要补充,也可能在光学陀螺技术中有用。

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