旋涡
角动量
物理
光学
光学镊子
光学力
涡流
光的轨道角动量
强度(物理)
光束
总角动量
经典力学
机械
作者
Hao Zhang,Xinzhong Li,Haixiang Ma,Miaomiao Tang,Hehe Li,Jie Tang,Yangjian Cai
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2019-07-26
卷期号:27 (16): 22930-22930
被引量:77
摘要
In an optical vortex (OV) field, the orbital angular momentum (OAM) distribution strongly depends on the intensity, which results in difficulty in OAM independent modulation. To overcome this limitation, we propose a grafted optical vortex (GOV) via spiral phase reconstruction of two or more OVs with different topological charges (TCs). To remain the annular shape of the GOV's intensity, the Dirac δ-function is employed to restrict the energy in a ring. Theoretical analysis and manipulation experiments of polystyrene microspheres show that the magnitude and direction of the GOV's local OAM are controllable by modulating the grafted TCs while the intensity remains constant. The results of this work provide an ingenious method to control the local tangential force on the light ring, which will promote potential applications in optical trapping and rotating micro-particles.
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