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Delayed Feedback Dynamics of Liénard-Type Resonant Tunneling-Photo-Detector Optoelectronic Oscillators

机译:Liénard型谐振隧穿光电探测器光电振荡器的延迟反馈动力学

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We use the nonlinear dynamics approach for studying delayed feedback optoelectronic oscillators (OEOs) formed by hybrid integration of resonant tunneling diode (RTD) photo-detectors with laser diodes, in both single and dual optical fiber feedback routes. In the single loop topology, the performance of the RTD-OEO free-running self-sustained oscillator is improved in terms of phase noise, with a compromise between the delay line and the strength of the optical re-injection. In the dual-loop configuration, superior performance is achieved due to the suppression of the side modes associated with the optical cavity length, resulting in a side mode suppression ratio of up to ${-}{rm 60}~{rm dBc}$ of the carrier frequency. We compare experimental results with numerical simulations based on a system of delay differential equations comprising a Liénard oscillator model driven by white Gaussian noise and coupled with laser rate equations. The delayed feedback Liénard oscillator model gives considerable insight into the RTD-OEO dynamical regimes predicting its main features in both single- and dual-loop configurations.
机译:我们使用非线性动力学方法研究在单光纤和双光纤反馈路径中由共振隧穿二极管(RTD)光电探测器与激光二极管混合集成形成的延迟反馈光电振荡器(OEO)。在单环路拓扑中,RTD-OEO自由运行的自持振荡器的性能在相位噪声方面得到了改善,并且在延迟线和光学再注入的强度之间取得了折衷。在双环路配置中,由于抑制了与光腔长度相关的副模,因此可实现卓越的性能,从而使副模抑制比高达$ {-} {rm 60}〜{rm dBc} $载波频率。我们将实验结果与基于延迟微分方程组的数值模拟进行比较,该系统包括由白高斯噪声驱动的Liénard振荡器模型,并与激光速率方程耦合。延迟反馈Liénard振荡器模型为RTD-OEO动力学机制提供了丰富的见解,从而预测了其在单回路和双回路配置中的主要功能。

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