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基于逆向设计的多维复用超表面全息术

Multi-Dimensional Multiplexed Metasurface Holography by Inverse Design.

作者信息

Yin Yongyao, Jiang Qiang, Wang Hongbo, Liu Jianghong, Xie Yiyang, Wang Qiuhua, Wang Yongtian, Huang Lingling

机构信息

Beijing Engineering Research Center of Mixed Reality and Advanced Display, School of Optics and Photonics, Beijing Institute of Technology, Beijing, 100081, China.

Optoelectronics Technology, Ministry of Education, Beijing University of Technology, Beijing, 100124, China.

出版信息

Adv Mater. 2024 May;36(21):e2312303. doi: 10.1002/adma.202312303. Epub 2024 Feb 27.

Abstract

Multi-dimensional multiplexed metasurface holography extends holographic information capacity and promises revolutionary advancements for vivid imaging, information storage, and encryption. However, achieving multifunctional metasurface holography by forward design method is still difficult because it relies heavily on Jones matrix engineering, which places high demands on physical knowledge and processing technology. To break these limitations and simplify the design process, here, an end-to-end inverse design framework is proposed. By directly linking the metasurface to the reconstructed images and employing a loss function to guide the update of metasurface, the calculation of hologram can be omitted; thus, greatly simplifying the design process. In addition, the requirements on the completeness of meta-library can also be significantly reduced, allowing multi-channel hologram to be achieved using meta-atoms with only two degrees of freedom, which is very friendly to processing. By exploiting the proposed method, metasurface hologram containing up to 12 channels of multi-wavelength, multi-plane, and multi-polarization is designed and experimentally demonstrated, which exhibits the state-of-the-art information multiplexing capacity of the metasurface composed of simple meta-atoms. This method is conducive to promoting the intelligent design of multifunctional meta-devices, and it is expected to eventually accelerate the application of meta-devices in colorful display, imaging, storage and other fields.

摘要

多维复用超表面全息术扩展了全息信息容量,并有望在逼真成像、信息存储和加密方面取得革命性进展。然而,通过正向设计方法实现多功能超表面全息术仍然困难,因为它严重依赖琼斯矩阵工程,这对物理知识和处理技术提出了很高的要求。为了突破这些限制并简化设计过程,本文提出了一种端到端的逆向设计框架。通过将超表面直接与重建图像相联系,并采用损失函数来指导超表面的更新,可以省略全息图的计算;从而大大简化了设计过程。此外,对元库完整性的要求也可以显著降低,允许使用仅具有两个自由度的元原子来实现多通道全息图,这对处理非常友好。通过利用所提出的方法,设计并实验展示了包含多达12个通道的多波长、多平面和多极化的超表面全息图,其展示了由简单元原子组成的超表面的当前最先进的信息复用能力。该方法有利于推动多功能元器件的智能设计,并有望最终加速元器件在彩色显示、成像、存储等领域的应用。

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