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基于具有高存储容量的串联耦合微环谐振器的光子延时储层计算。

Photonic time-delayed reservoir computing based on series-coupled microring resonators with high memory capacity.

作者信息

Ren Hongliang, Li Yijia, Li Ming, Gao Mingyi, Lu Jin, Zou Chang-Ling, Dong Chun-Hua, Yu Peiqiong, Yang Xiaoniu, Xuan Qi

出版信息

Opt Express. 2024 Mar 25;32(7):11202-11220. doi: 10.1364/OE.518063.

Abstract

On-chip microring resonators (MRRs) have been proposed to construct time-delayed reservoir computing (RC) systems, which offer promising configurations available for computation with high scalability, high-density computing, and easy fabrication. A single MRR, however, is inadequate to provide enough memory for the computation task with diverse memory requirements. Large memory requirements are satisfied by the RC system based on the MRR with optical feedback, but at the expense of its ultralong feedback waveguide. In this paper, a time-delayed RC is proposed by utilizing a silicon-based nonlinear MRR in conjunction with an array of linear MRRs. These linear MRRs possess a high quality factor, providing enough memory capacity for the RC system. We quantitatively analyze and assess the proposed RC structure's performance on three classical tasks with diverse memory requirements, i.e., the Narma 10, Mackey-Glass, and Santa Fe chaotic timeseries prediction tasks. The proposed system exhibits comparable performance to the system based on the MRR with optical feedback, when it comes to handling the Narma 10 task, which requires a significant memory capacity. Nevertheless, the dimension of the former is at least 350 times smaller than the latter. The proposed system lays a good foundation for the scalability and seamless integration of photonic RC.

摘要

片上微环谐振器(MRR)已被提议用于构建时延储层计算(RC)系统,该系统提供了具有高可扩展性、高密度计算和易于制造等优点的有前景的计算配置。然而,单个MRR不足以满足具有多样化存储需求的计算任务的足够存储。基于具有光反馈的MRR的RC系统可满足大存储需求,但代价是其超长反馈波导。本文提出了一种通过将基于硅的非线性MRR与线性MRR阵列相结合的时延RC。这些线性MRR具有高品质因数,为RC系统提供了足够的存储容量。我们在具有不同存储需求的三个经典任务上,即Narma 10、Mackey-Glass和圣达菲混沌时间序列预测任务,对所提出的RC结构的性能进行了定量分析和评估。在所提出的系统处理需要大量存储容量的Narma 10任务时,其表现出与基于具有光反馈的MRR的系统相当的性能。然而,前者的尺寸至少比后者小350倍。所提出的系统为光子RC的可扩展性和无缝集成奠定了良好的基础。

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