论文标题

直接观察光学镊子中光动量的影响

Direct observation of the effects of spin dependent momentum of light in optical tweezers

论文作者

Pal, Debapriya, Gupta, Subhasish Dutta, Ghosh, Nirmalya, Banerjee, Ayan

论文摘要

我们证明,光学镊子中圆两极化的高斯光束的紧密聚焦会导致自旋摩托锁定 - 横向旋转角动量密度与螺旋性无关,而横向动量(poynting载体)变得均依赖。我们的理论计算,数值模拟和实验表明,诱捕束路径中的分层培养基的存在显着增强了相对于梁轴的径向方向上的横向动量的幅度,同样也会导致高轴下方强度。这种重叠使我们能够通过响应输入的圆形极化基本高斯束,从而实验观察到双轴的双发性粒子的圆形运动,该粒子没有内在的轨道角动量。循环运动取决于输入光束的螺旋,因此我们可以将其识别为在传播我们的光学镊子设置中获得的光束时,它是难以捉摸的Belinfante旋转的特征。我们的工作可以扩展到携带固有轨道角动量的高阶梁,从而导致使用光学镊子实现复杂粒子操作的简单途径。

We demonstrate that tight focusing of a circularly polarized Gaussian beam in optical tweezers leads to spin-momentum locking - with the transverse spin angular momentum density being independent of helicity, while the transverse momentum (Poynting vector) becomes helicity dependent. Our theoretical calculations, numerical simulations, and experiments reveal that the presence of a stratified medium in the path of the trapping beam significantly enhances the magnitude of transverse momentum in the radial direction with respect to the beam axis, and likewise, also leads to high off-axial intensity. This overlap allows us to experimentally observe the circular motion of a birefringent particle, trapped off-axis, in response to an input circularly polarized fundamental Gaussian beam carrying no intrinsic orbital angular momentum. The circular motion is dependent on the helicity of the input beam, so that we can identify it to be the signature of the elusive Belinfante spin in propagating light beams obtained in our optical tweezers setup. Our work can be extended to higher-order beams carrying intrinsic orbital angular momentum leading to simple routes of achieving complex particle manipulation using optical tweezers.

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