Yue Liu, Chengxin Zhou, Kun Yu, Yufang Liu, Gangquan Wang, Bin Yan, Hongzhan Liu
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引用次数: 0
摘要
矢量轨道角动量(OAM)光束由高阶波恩卡莱(HOP)球描述,是携带OAM的波的广义形式,波面具有不均匀的偏振。我们构建了具有可调振幅、偏振和相位的全介质元面,以产生任意矢量 OAM 波束。元表面由两对交替排列的硅纳米柱组成。利用与圆偏振相关的四个元原子的干涉效应,结合传播相位和几何相位,在正交圆偏振光的入射下,可获得两个振幅、相位可控、拓扑电荷相等但符号相反的 OAM 光束。对于 x 线偏振光,通过上述 OAM 光束的叠加,可在 HOP 球上产生任意矢量 OAM 光束。此外,通过改变两个 OAM 光束的振幅和相位,还可以揭示光束在波恩卡莱球经度和纬度上的演变过程。这项工作为实现矢量 OAM 光束提供了一种简单、有效和灵活的方法,同时对微纳尺度矢量光场的产生和操纵具有潜在的影响。
Generation of arbitrary vector orbital angular momentum beams on higher-order Poincaré spheres based on an all-dielectric metasurface with complex amplitude modulation.
Vector orbital angular momentum (OAM) beams, described by higher-order Poincaré (HOP) sphere, are generalized forms of waves carrying OAM with an inhomogeneous polarization of wavefronts. We construct all-dielectric metasurfaces with adjustable amplitude, polarization, and phase to generate arbitrary vector OAM beams. The metasurface is composed of two pairs of silicon nanopillars arranged alternately. Using the interference effect of the four meta-atoms related to the circular polarization, combined with the propagation and geometric phases, two OAM beams with controlled amplitude, phase, and equal topological charge but opposite signs can be obtained under the incidence of orthogonally circularly polarized lights. For the x linearly polarized light, arbitrary vector OAM beams on the HOP sphere are generated via the superposition of the above OAM beams. Additionally, the evolution process of the beam on the longitude and latitude of the Poincaré sphere is revealed by changing the amplitude and phase of the two OAM beams. This work provides a simple, effective, and flexible method for realizing vector OAM beams while having potential implications for the generation and manipulation of vectorial light fields at the micro-nano scale.
期刊介绍:
Optics Express is the all-electronic, open access journal for optics providing rapid publication for peer-reviewed articles that emphasize scientific and technology innovations in all aspects of optics and photonics.