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利用超表面高效生成双功能全息图。

High-efficiency generation of bi-functional holography with metasurfaces.

作者信息

Dai Changhong, Liu Tong, Wang Dongyi, Zhou Lei

机构信息

State Key Laboratory of Surface Physics, Key Laboratory of Micro and Nano Photonic Structures (Ministry of Education), Shanghai Key Laboratory of Metasurfaces for Light Manipulation and Department of Physics, Fudan University, Shanghai 200438, China.

Department of Physics, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.

出版信息

Nanophotonics. 2025 Feb 20;14(8):1283-1290. doi: 10.1515/nanoph-2024-0677. eCollection 2025 Apr.

Abstract

Holography is a highly desired technology in modern photonics, yet setups for traditional generating methods suffer from complexity and bulky sizes. While metasurface-based holography exhibits advantages of compactness and easy-fabrication, most meta-holograms realized so far exhibit only single functionality, with a few multifunctional ones suffering from imbalances of efficiency and device-thickness. Here, we propose a generic approach to design metasurfaces for realization of multiple holographic images with , and experimentally verify the concept in the telecom regime. We first design a series of high-efficiency reflective meta-atoms exhibiting incident-spin-delinked reflection phases governed by geometric and resonant mechanisms, and experimentally characterize their optical properties at wavelengths around 1,064 nm. We next experimentally demonstrate a single-functional meta-hologram as a benchmark test. Finally, we employ the designed meta-atoms to construct a metasurface with the thickness ∼1/4, and experimentally demonstrate its capability of generating two distinct holographic images under illuminations of circularly polarized light beams with different helicities, possessing generation efficiencies ∼48.08 %. Our work provides a highly-efficient and ultra-compact platform to generate multifunctional holographic images, which may inspire numerous applications in integration optics.

摘要

全息术是现代光子学中一项备受期待的技术,然而传统生成方法的装置存在复杂性和体积庞大的问题。虽然基于超表面的全息术具有紧凑性和易于制造的优点,但迄今为止实现的大多数超全息图仅具有单一功能,少数多功能超全息图存在效率和器件厚度不平衡的问题。在此,我们提出一种通用方法来设计超表面,以实现具有多种全息图像的功能,并在电信频段通过实验验证了这一概念。我们首先设计了一系列高效反射型超原子,其呈现出由几何和共振机制控制的与入射自旋解耦的反射相位,并在波长约为1064nm处通过实验表征了它们的光学特性。接下来,我们通过实验展示了一个单功能超全息图作为基准测试。最后,我们使用设计的超原子构建了一个厚度约为1/4的超表面,并通过实验证明了其在不同螺旋度的圆偏振光束照射下生成两个不同全息图像的能力,生成效率约为48.08%。我们的工作提供了一个高效且超紧凑的平台来生成多功能全息图像,这可能会激发集成光学中的众多应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f11/12019932/84fd111e14da/j_nanoph-2024-0677_fig_001.jpg

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