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用于高效全息术的偏振与空间复用超表面

Polarization and space multiplexing metasurface for high-efficiency holography.

作者信息

Yang Silei, Zhu Ziyi, Fu Xiaojian, Wang Peng, Liu Yujie, Wu Junwei

出版信息

Opt Express. 2025 Feb 24;33(4):8701-8711. doi: 10.1364/OE.546987.

Abstract

This paper presents a fast and efficient design method for generating multiplanar, dual-linearly polarized holographic patterns in the near-field of a Huygens metasurface when illuminated by incident waves with matching polarizations. The propagation kernel of the traditional Gerchberg-Saxton (GS) algorithm is modified to utilize Green's function (DGF), and a dynamic control factor is introduced to adjust the uniformity of the pattern amplitude. This modification results in an imaging phase distribution, hereby designated as the improved weighted Gerchberg-Saxton algorithm (GS-W). The use of a Huygens metasurface with high transmittance and large phase coverage increases the imaging efficiency of the incident energy, exceeding 32%. As proof of the concept, we fabricate the aforementioned meta-device, which contains 40 × 40 meta-atoms, each with a length and width of 6 mm (0.5λ at 25 GHz) and thickness in the longitudinal direction of 1.8 mm. Both the calculation and simulation results show that the quality factors of all reconstructed patterns can exceed more than 42%.

摘要

本文提出了一种快速高效的设计方法,用于在惠更斯超表面近场中,当被具有匹配极化的入射波照射时生成多平面、双线性极化全息图案。对传统的格尔奇伯格 - 萨克斯顿(GS)算法的传播核进行了修改,以利用格林函数(DGF),并引入了一个动态控制因子来调整图案幅度的均匀性。这种修改产生了一种成像相位分布,在此指定为改进的加权格尔奇伯格 - 萨克斯顿算法(GS - W)。使用具有高透射率和大相位覆盖范围的惠更斯超表面提高了入射能量的成像效率,超过了32%。作为概念验证,我们制造了上述超表面器件,其包含40×40个超原子,每个超原子的长度和宽度均为6毫米(在25GHz时为0.5λ),纵向厚度为1.8毫米。计算和仿真结果均表明,所有重建图案的品质因数均可超过42%。

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