Tang Dengfei, Liang En, Lu Qiuyi, Zhao Haibin, Li Ziwei
Department of Physics, State Key Laboratory of Surface Physics, Fudan University, Shanghai, 200433, China.
Key Laboratory of Micro and Nano Photonic Structures (Ministry of Education), and Shanghai Ultra-precision Optical Manufacturing Engineering Research Center, Department of Optical Science and Engineering, Fudan University, Shanghai, 200433, China.
Sci Rep. 2024 Aug 12;14(1):18672. doi: 10.1038/s41598-024-69585-z.
We investigated a time-delayed optoelectronic oscillator (OEO) that displays a wide range of complex dynamic behavior under small time delay. The phase-space trajectory distributions in different dynamic regimes were compared which brings a new perspective on the underlying mechanism of the transition process. It was found that bifurcation is always possible no matter how small the time delay is even if the universal adiabatic approximation model is invalid. Hereby we proposed a versatile simple oscillator which has a potential capacity as memory carrier and high-dimensional state spatial mapping ability that brings 1000 times computing-efficiency improvements of reservoir computing over the large time delay one. Furthermore, we demonstrated a new approach for a tunable optoelectronic pulse generator (repetition rate at 0.2 MHz and 0.25 GHz) which depends critically on time-delayed input electrical pulse. The proposed oscillator is also a promising system for the applications of fast chaos-based communication.
我们研究了一种延时光电振荡器(OEO),它在小时间延迟下展现出广泛的复杂动态行为。比较了不同动态区域中的相空间轨迹分布,这为过渡过程的潜在机制带来了新的视角。研究发现,无论时间延迟多么小,即使通用绝热近似模型无效,分岔总是可能的。据此,我们提出了一种通用的简单振荡器,它具有作为存储载体的潜在能力和高维状态空间映射能力,与大时间延迟的振荡器相比,其水库计算的计算效率提高了1000倍。此外,我们展示了一种用于可调谐光电脉冲发生器(重复频率为0.2 MHz和0.25 GHz)的新方法,该方法严重依赖于延时输入电脉冲。所提出的振荡器也是基于快速混沌通信应用的一个有前景的系统。