Suppr超能文献

基于交叉增益调制的光子储层计算,采用硅基低功耗薄膜半导体光放大器。

Cross-gain modulation-based photonic reservoir computing using low-power-consumption membrane SOA on Si.

作者信息

Tsurugaya Takuma, Hiraki Tatsurou, Nakajima Mitsumasa, Aihara Takuma, Diamantopoulos Nikolaos-Panteleimon, Fujii Takuro, Segawa Toru, Matsuo Shinji

出版信息

Opt Express. 2022 Jun 20;30(13):22871-22884. doi: 10.1364/OE.458264.

Abstract

We demonstrate photonic reservoir computing (RC) utilizing cross-gain modulation (XGM) in a membrane semiconductor optical amplifier (SOA) on a Si platform. The membrane SOA's features of small active volume and strong optical confinement enable low-power nonlinear operation of the reservoir, with 10-mW-scale power consumption and 10-µW-scale optical input power. The power consumption is about an order of magnitude lower than that of conventional SOAs that exhibit saturable nonlinearity. The XGM-based reservoir is configured by injecting a delayed feedback signal into the SOA from a direction opposite to the input signal. This configuration provides robust operation of the feedback circuit because of the phase insensitivity and the elimination of loop oscillation risk. The RC performance is evaluated via the information processing capacity (IPC) and a nonlinear benchmark task. It is revealed that the XGM-based reservoir performs strong nonlinear transformation of input time-series signals. The series of results consistently show that the membrane SOA performs RC-applicable nonlinear operations through XGM at a low power scale.

摘要

我们展示了在硅平台上的薄膜半导体光放大器(SOA)中利用交叉增益调制(XGM)的光子储层计算(RC)。薄膜SOA的有源体积小和光学限制强的特性使得储层能够进行低功耗非线性操作,功耗为10毫瓦量级,光输入功率为10微瓦量级。该功耗比表现出饱和非线性的传统SOA低约一个数量级。基于XGM的储层是通过从与输入信号相反的方向向SOA注入延迟反馈信号来配置的。由于相位不敏感和消除了环路振荡风险,这种配置为反馈电路提供了稳健的操作。通过信息处理能力(IPC)和一个非线性基准任务来评估RC性能。结果表明,基于XGM的储层对输入时间序列信号进行强非线性变换。这一系列结果一致表明,薄膜SOA通过XGM在低功率规模下执行适用于RC的非线性操作。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验