最上等的
芯(光纤)
计算机科学
物理
电信
光学
方位角
作者
Wenkai Zhang,Bo Wu,Wentao Gu,Hui Zhou,Weida Hu,Tingchao He,L. Chen,Wenchan Dong,Dongmei Huang,Yang Zhao,Wei Wang,Naidi Cui,Qiansheng Wang,Xi Xiao,Jianji Dong,Xinliang Zhang
出处
期刊:Optica
[Optica Publishing Group]
日期:2025-07-02
卷期号:12 (8): 1252-1252
被引量:2
标识
DOI:10.1364/optica.557867
摘要
The soaring demand for computing resources has spurred great interest in photonic computing with higher speed and larger computing capacity. Photonic logic gates are of crucial importance due to the fundamental role of Boolean logic in modern digital computing systems. However, most photonic logic schemes struggle to exhibit the capability of massively parallel processing and flexible reconfiguration, owing to weak and fixed nonlinearity in optical elements. Here, we propose a photonic logic tensor computing architecture for the first time and fabricate the photonic universal logic tensor core (PULTC) with a parallel logic computing capacity beyond Tbit/s. Ten wavelength channels and four spatial channels are designed in the PULTC, where the logic computing speed in each channel can reach 50 Gbit/s. After the nonlinear mapping of microring modulators, arbitrary logic operations can be achieved by configuring the Mach–Zehnder interferometer mesh. We further develop a photonic logic tensor card and demonstrate various functions including cellular automata, image encryption and decryption, and image edge extraction. Our work offers an innovative route for photonic universal logic computing with high-parallel capability and propels the practical applications of photonic logic computing.
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