Gu Zhijuan, Shi Yang, Zhu Zhangming, Li Zuhang, Zou Mingjie, Yang Changming, Liu Yang, Yu Yu, Zhang Xinliang
Wuhan National Laboratory for Optoelectronics and School of Optical and Electronic Information, Huazhong University of Science and Technology, 430074 Wuhan, China.
Institute of Physics, Swiss Federal Institute of Technology Lausanne, CH-1015 Lausanne, Switzerland.
Sci Adv. 2025 May 30;11(22):eadu7277. doi: 10.1126/sciadv.adu7277.
Multidimensional optical sensing is crucial in information technology and modern intelligent systems. Despite advancement in optical sensing, capturing multidimensional light field information remains challenging, typically implemented using cascaded single-dimensional sensors and discrete optoelectrical components for information decoupling. Here, we present an all-integrated multidimensional sensing chip incorporating a light field sensitizer and a photonic neural network processor. The inverse-designed sensitizer projects the multidimensional input into multiple channels; each dimension is then decoupled through the reconfigurable nonlinear neural network. We experimentally achieved 91% high accuracy for single-shot, concurrent sensing of intensity, polarization, and wavelength using a well-trained five-layer neuromorphic system. The fully on-chip system eliminates optical-electrical conversion and offline digital processing, enabling low-latency and high energy efficiency. Moreover, we achieved stabilization and recovery of high-speed signals at 100 gigabytes per second under randomly perturbed polarization and wavelengths. This work shows the potential for low-latency, energy-efficient optical sensing and complex information processing using neuromorphic integrated photonics.
多维光学传感在信息技术和现代智能系统中至关重要。尽管光学传感取得了进展,但捕获多维光场信息仍然具有挑战性,通常使用级联的单维传感器和离散的光电组件来实现信息解耦。在此,我们展示了一种集成了光场敏化器和光子神经网络处理器的全集成多维传感芯片。通过逆设计的敏化器将多维输入投影到多个通道;然后通过可重构的非线性神经网络对每个维度进行解耦。我们使用经过良好训练的五层神经形态系统,通过实验实现了对强度、偏振和波长的单次并发传感91%的高精度。全片上系统消除了光电转换和离线数字处理,实现了低延迟和高能效。此外,我们在随机扰动的偏振和波长条件下,实现了每秒100千兆字节的高速信号的稳定和恢复。这项工作展示了使用神经形态集成光子学实现低延迟、高能效光学传感和复杂信息处理的潜力。