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基于衍射神经网络的偏振和波长路由器。

Polarization and wavelength routers based on diffractive neural network.

作者信息

Lin Xiaohong, Fu Yulan, Zhang Kuo, Zhang Xinping, Feng Shuai, Hu Xiaoyong

机构信息

School of Physics and Optoelectronic Engineering, Beijing University of Technology, Beijing, 100124, China.

School of Science, Minzu University of China, Beijing, 100081, China.

出版信息

Front Optoelectron. 2024 Jul 16;17(1):22. doi: 10.1007/s12200-024-00126-2.

Abstract

In the field of information processing, all-optical routers are significant for achieving high-speed, high-capacity signal processing and transmission. In this study, we developed three types of structurally simple and flexible routers using the deep diffractive neural network (DNN), capable of routing incident light based on wavelength and polarization. First, we implemented a polarization router for routing two orthogonally polarized light beams. The second type is the wavelength router that can route light with wavelengths of 1550, 1300, and 1100 nm, demonstrating outstanding performance with insertion loss as low as 0.013 dB and an extinction ratio of up to 18.96 dB, while also maintaining excellent polarization preservation. The final router is the polarization-wavelength composite router, capable of routing six types of input light formed by pairwise combinations of three wavelengths (1550, 1300, and 1100 nm) and two orthogonal linearly polarized lights, thereby enhancing the information processing capability of the device. These devices feature compact structures, maintaining high contrast while exhibiting low loss and passive characteristics, making them suitable for integration into future optical components. This study introduces new avenues and methodologies to enhance performance and broaden the applications of future optical information processing systems.

摘要

在信息处理领域,全光路由器对于实现高速、大容量信号处理与传输具有重要意义。在本研究中,我们利用深度衍射神经网络(DNN)开发了三种结构简单且灵活的路由器,能够根据波长和偏振对入射光进行路由。首先,我们实现了一种用于路由两束正交偏振光束的偏振路由器。第二种类型是波长路由器,它可以对波长为1550、1300和1100 nm的光进行路由,其插入损耗低至0.013 dB,消光比高达18.96 dB,同时还保持了出色的偏振保持特性。最后一种路由器是偏振 - 波长复合路由器,能够对由三种波长(1550、1300和1100 nm)与两种正交线偏振光两两组合形成的六种类型的输入光进行路由,从而提高了器件的信息处理能力。这些器件结构紧凑,在保持高对比度的同时呈现出低损耗和无源特性,使其适合集成到未来的光学组件中。本研究为提高未来光学信息处理系统的性能和拓展其应用引入了新的途径和方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0dc/11250754/e5c7c1b86d7f/12200_2024_126_Fig1_HTML.jpg

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