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使用二元涡旋产生透镜生成光学涡旋。

Generation of optical vortices by using binary vortex producing lenses.

作者信息

Londoño N, Rueda E, Gómez J A, Lencina A

出版信息

Appl Opt. 2015 Feb 1;54(4):796-801. doi: 10.1364/AO.54.000796.

Abstract

Experimental high-quality optical vortices of different topological charges are generated by using a vortex producing lens with two phase levels. In our setup, the lens is displayed on a liquid-crystal spatial light modulator that only attains phase modulation of around 1.2π. This achievement opens the real possibility of creating high-quality optical vortices with devices of very low phase modulation capacity. The experimental setup is fully described, and the considerations to set the optimal parameters to obtain high-quality optical vortices are discussed and experimentally established. The phase and intensity of the optical vortices are recovered. The phase is obtained through a phase-shifting method that is directly programmed onto the modulator avoiding any class of mechanical displacement.

摘要

通过使用具有两个相位级别的涡旋产生透镜,生成了具有不同拓扑电荷的实验性高质量光学涡旋。在我们的装置中,该透镜显示在仅能实现约1.2π相位调制的液晶空间光调制器上。这一成果开启了利用相位调制能力非常低的器件创建高质量光学涡旋的实际可能性。文中对实验装置进行了全面描述,并讨论了设置最佳参数以获得高质量光学涡旋的注意事项,并通过实验确定了这些参数。恢复了光学涡旋的相位和强度。通过直接编程到调制器上的相移方法获得相位,避免了任何类型的机械位移。

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