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An intuitive view of the origin of orbital angular momentum in optical vortices

机译:光学涡旋中轨道角动量起源的直观视图

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A modulated laser beam by a phase pattern exp(ilθ) can be focused by an objective into a ring-like optical vortex, where l is a constant and θ is the azimuth angle. The vortex is capable of trapping the particles nearby and circulating them along the ring. This phenomenon is often explained involving Fourier optics and the transfer of orbital angular momentum (OAM). Although Fourier optics transforms the electric field distribution of the modulated laser beam behind the phase pattern to that of the vortex, it does not include both the path and OAM of the photons of the electromagnetic wave. Therefore, it is difficult to further trace the transfer of OAM from the photons to the particles in the vortex. In this paper, we propose a simple and intuitive view to the origin of optical vortex. By analyzing the relationship of the intensity distributions between the phase of the phase pattern and the intensity of the vortex by utilizing Fourier transform, we propose that the phenomenon of vortex also involve the transfer of linear momentum on the vortex plane transversely.
机译:物镜可以将通过相位模式exp(ilθ)调制的激光束聚焦到一个环形光学涡旋中,其中l是一个常数,θ是方位角。涡流能够捕获附近的颗粒并使它们沿环循环。通常用傅立叶光学和轨道角动量(OAM)的转移来解释这种现象。尽管傅立叶光学将已调制激光束的电场分布转换为相位模式之后的涡流,但它既不包含电磁波光子的路径又包含OAM。因此,难以进一步追踪OAM从光子到涡旋中粒子的转移。在本文中,我们提出了一种简单直观的光学涡旋起源的观点。通过利用傅立叶变换分析相图相位和涡旋强度之间的强度分布关系,我们认为涡旋现象还涉及涡旋平面上线性动量的横向传递。

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