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Measurement of Orbital Angular Momentum in Optical Tweezers

机译:镊子中眼角动量的测量

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Several techniques have been proposed and used for the rotation or alignment of microparticles in optical tweezers. In every case the optical torque results from the exchange of angular momentum between the beam and the particle, and, in principle, can be measured by purely optical means. Measurement of this torque could be useful for quantitative measurements in biological systems and is required to measure properties such as viscosity of liquids in microlitre (or less) volumes. Although elongated particles will align with the plane of polarisation, the torque efficiency is low, typically about 0.05h per photon. The use of a beam with an elongated focal spot can increase this torque by a factor of 10-20 times, due to the transfer of orbital angular momentum. We report measurements of the orbital component using an analysing (Laguerre-Gauss) hologram. As a proof of principle experiment, an elliptical beam scattered off a glass rod was simulated on a macroscopic scale. The torque was found to be as much as 0.8h per photon. Microscopic elongated objects have been aligned and rotated in optical tweezers and we plan to make measurements of the torques involved.
机译:已经提出了几种技术并将其用于光学镊子中微粒的旋转或对准。在每种情况下,光转矩都是由光束和粒子之间的角动量交换产生的,并且原则上可以通过纯光学手段进行测量。该扭矩的测量对于生物系统中的定量测量可能是有用的,并且是测量诸如微升(或更小)体积的液体粘度之类的特性所必需的。尽管拉长的粒子将与偏振平面对齐,但转矩效率仍然很低,通常约为每个光子0.05h。由于轨道角动量的传递,使用具有长焦斑的光束可使此扭矩增加10到20倍。我们使用分析(Laguerre-Gauss)全息图报告对轨道分量的测量。作为原理实验的证明,以宏观尺度模拟了从玻璃棒上散射的椭圆光束。发现该扭矩高达每个光子0.8h。微观细长物体已在光镊中对准并旋转,我们计划对所涉及的扭矩进行测量。

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