光学
旋涡
物理
拓扑量子数
圆极化
角动量
光学镊子
拓扑(电路)
梁(结构)
微带线
量子力学
数学
组合数学
作者
H. Liu,Chengxin Zhou,Kuangling Guo,Zhongchao Wei,Hongzhan Liu
出处
期刊:Optics Express
[The Optical Society]
日期:2022-08-01
卷期号:30 (17): 30881-30881
被引量:13
摘要
The perfect vortex (PV) beam, characterized by carrying orbital angular momentum and a radial electric intensity distribution independent of the topological charge, has important applications in optical communication, particle manipulation, and quantum optics. Conventional methods of generating PV beams require a series of bulky optical elements that are tightly collimated with each other, adding to the complexity of optical systems. Here, making the amplitude of transmitted co-polarized and cross-polarized components to be constant, all-dielectric transmission metasurfaces with superimposed phase profiles integrating spiral phase plate, axicon and Fourier lens are constructed based on the phase-only modulation method. Using mathematical derivation and numerical simulation, multi-channel PV beams with controllable annular ring radius and topological charge are realized for the first time under circularly polarized light incidence combining the propagation phase and geometric phase. Meanwhile, perfect vector vortex beams are produced by superposition of PV beams under the incidence of left-handed circularly polarized and right-handed circularly polarized lights, respectively. This work provides a new perspective on generating tailored PV beams, increasing design flexibility and facilitating the construction of compact, integrated, and versatile nanophotonics platforms.
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