论文标题

多模半导体激光器中的混沌模式竞争动力学,带有光学反馈和注入

Chaotic mode-competition dynamics in a multimode semiconductor laser with optical feedback and injection

论文作者

Iwami, Ryugo, Kanno, Kazutaka, Uchida, Atsushi

论文摘要

光子计算引起了越来越多的兴趣,以加速机器学习应用中的信息处理。多模式半导体激光器的模式竞争动力学可用于解决用于计算应用程序的增强学习的多臂匪徒问题。在这项研究中,我们通过数值评估具有光学反馈和注射的多模半导体激光器中的混沌模式竞争动力学。我们观察纵向模式之间的混沌模式竞争动力学,并通过将外部光学信号注入纵向模式之一来控制它们。我们将主导模式定义为具有最大强度的模式。随着光学注入强度的增加,注射模式的显性模式比率增加。我们发现,由于不同的光反馈阶段,在光学注入强度方面,主要模式比率的特性不同。我们通过精确调整光学注入信号和注入模式之间的初始光学频率来提出一种控制技术比率特征的控制技术。我们还评估了较大的主要模式比率和注入锁定范围的区域之间的关系。较大的主导模式比率的区域与注入锁定范围不符。这种差异是由具有光学反馈和注射的多模式半导体激光器中的复杂模式竞争动力学产生的。多模激光器中混沌模式竞争动力学的这种控制技术有望在增强学习和储层计算中应用作为光子人工智能。

Photonic computing is attracting increasing interest to accelerate information processing in machine learning applications. The mode-competition dynamics of multimode semiconductor lasers is useful for solving the multi-armed bandit problem in reinforcement learning for computing applications. In this study, we numerically evaluate the chaotic mode-competition dynamics in a multimode semiconductor laser with optical feedback and injection. We observe the chaotic mode-competition dynamics among the longitudinal modes and control them by injecting an external optical signal into one of the longitudinal modes. We define the dominant mode as the mode with the maximum intensity; the dominant-mode ratio for the injected mode increases as the optical injection strength increases. We find that the characteristics of the dominant mode ratio in terms of the optical injection strength are different among the modes owing to the different optical feedback phases. We propose a control technique for the characteristics of the dominant mode ratio by precisely tuning the initial optical frequency detuning between the optical injection signal and injected mode. We also evaluate the relationship between the region for the large dominant mode ratio and injection locking range. The region for the large dominant mode ratio does not correspond to the injection-locking range. This discrepancy results from the complex mode-competition dynamics in multimode semiconductor lasers with both optical feedback and injection. This control technique of chaotic mode-competition dynamics in multimode lasers is promising for applications in reinforcement learning and reservoir computing as photonic artificial intelligence.

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