Zhang Yuchao, Yang Xiaodong, Gao Jie
Department of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO, 65409, USA.
Sci Rep. 2019 Jun 24;9(1):9133. doi: 10.1038/s41598-019-45727-6.
The orbital angular momentum (OAM) transformation of optical vortex is realized upon using aluminum metasurfaces with phase distributions derived from the caustic theory. The generated OAM transformation beam has the well-defined Bessel-like patterns with multiple designed topological charges from -1 to +2.5 including both the integer-order and fractional-order optical vortices along the propagation. The detailed OAM transformation process is observed in terms of the variations of both beam intensity and phase profiles. The dynamic distributions of OAM mode density in the transformation are further analyzed to illustrate the conservation of the total OAM. The demonstration of transforming OAM states arbitrarily for optical vortex beams will lead to many new applications in optical manipulation, quantum optics, and optical communication.
利用基于焦散理论得到的相位分布的铝超表面实现了光学涡旋的轨道角动量(OAM)变换。所产生的OAM变换光束具有定义明确的类贝塞尔图案,带有从-1到+2.5的多个设计拓扑电荷,包括沿传播方向的整数阶和分数阶光学涡旋。根据光束强度和相位分布的变化观察到了详细的OAM变换过程。进一步分析了变换中OAM模式密度的动态分布,以说明总OAM的守恒。对光学涡旋光束进行任意OAM状态变换的演示将在光学操纵、量子光学和光通信中带来许多新应用。