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首页> 外文期刊>Photonics Journal, IEEE >Analysis for Commanding the Self-Pulsation of DFB Laser Diode With Electronic Feedback for Photonic Analog-to-Digital Conversion Application
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Analysis for Commanding the Self-Pulsation of DFB Laser Diode With Electronic Feedback for Photonic Analog-to-Digital Conversion Application

机译:用于光子模数转换应用的带电子反馈的DFB激光二极管自脉动命令分析

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摘要

Theoretical investigation on commanding the self-pulsation characteristics of the semiconductor distributed feedback (DFB) laser using electronic feedback is carried out in this paper. This device can be used as the sample-and-hold element for high-speed photonic analog-to-digital converter circuit. A recommendation for experimental realization of this scheme with the short-feedback-delay requirement is proposed. The effect of the feedback loop parameters have been simulated numerically based on the rate equations to manipulate the relaxation oscillation frequency of the laser. The results, which to our knowledge are reported for the first time, clearly demonstrate the effect of the feedback loop parameters on the laser intensity modulation frequency response transfer function. A detailed analysis of the noise effects on the performance of this system is also carried out. The conclusion establishes that the theoretical foundation for optimizing and controlling the DFB laser system pulsing source for the photonic analog-to-digital conversion application by tuning the laser drive current may have the potential to replace mode-locked fiber lasers in many other applications, from radio frequency (RF) photonics to chaos communication.
机译:本文对利用电子反馈控制半导体分布式反馈(DFB)激光器的自脉动特性进行了理论研究。该器件可用作高速光子模数转换器电路的采样保持元件。提出了对具有短反馈延迟要求的该方案的实验实现的建议。已基于速率方程数值模拟了反馈回路参数的影响,以控制激光器的弛豫振荡频率。据我们所知,这是首次报道的结果,清楚地证明了反馈环路参数对激光强度调制频率响应传递函数的影响。还对噪声对系统性能的影响进行了详细分析。结论表明,通过调节激光驱动电流来优化和控制用于光子模数转换应用的DFB激光系统脉冲源的理论基础,可能具有取代许多其他应用中锁模光纤激光器的潜力。射频(RF)光子到混乱的通信。

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