Gu Manna, Zhang Ruirui, Cheng Chuanfu, Dong Qingrui, Zeng Xiangyu, Zhang Yuqin, Zhan Zijun, Liu Chunxiang, Cheng Chen
Opt Express. 2023 Nov 6;31(23):38921-38938. doi: 10.1364/OE.503678.
Focused higher-order Poincaré (HOP) beams are of particular interest because they facilitate understanding the exotic properties of structured light and their applications in classical physics and quantum information. However, generating focused HOP beams using metasurfaces is challenging. In this study, we proposed a metasurface design comprising two sets of metal nanoslits for generating coaxially focused HOP beams. The nanoslits were interleaved on equispaced alternating rings. The initial rings started at the two adjacent Fresnel zones to provide opposite propagation phases for overall elimination of the co-polarization components. With the designed hyperbolic and helical profiles of the geometric phases, the two vortices of the opposite cross-circular-polarizations were formed and selectively focused, realizing HOP beams of improved quality. Simulations and experimental results demonstrated the feasibility of the proposed metasurface design. This study is of significance in the integration of miniaturized optical devices and enriches the application areas of metasurfaces.
聚焦高阶庞加莱(HOP)光束特别受关注,因为它们有助于理解结构化光的奇异特性及其在经典物理学和量子信息中的应用。然而,使用超表面生成聚焦HOP光束具有挑战性。在本研究中,我们提出了一种由两组金属纳米狭缝组成的超表面设计,用于生成同轴聚焦HOP光束。纳米狭缝交错排列在等间距的交替环上。初始环从两个相邻的菲涅耳区开始,以提供相反的传播相位,从而整体消除共偏振分量。通过设计的几何相位的双曲线和螺旋轮廓,形成并选择性地聚焦了相反交叉圆偏振的两个涡旋,实现了质量更高的HOP光束。模拟和实验结果证明了所提出的超表面设计的可行性。本研究对于小型化光学器件的集成具有重要意义,并丰富了超表面的应用领域。