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Intermittent bursts in a directly modulated laser diode

机译:直接调制的激光二极管中的间歇性脉冲

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Based on a rate equation description of a directly modulated laser diode, we investigate the origin of intermittent bursts that appear in the output power of the device. Sudden drops in the maximum amplitude of the laser's output characterize this behavior, found in the period doubling sequence that appears when the modulation index varies. From the investigation of this behavior the paper reveals the cause for the extreme sensitivity to noise of modulated laser diodes. Using bifurcation theory techniques, we explain how the unstable periodic solutions and the intrinsic noise of the device play a key role in the mechanism giving rise to these bursts. The paper shows that the mechanism is composed of two fundamental stages, which have been referred to as capture and reinjection. As we clarify the origin of the two stages, the different time scales involved in each one are also identified. From this analysis, we can conclude that the intermittent bursts are a characteristic signature of the process by which the laser stochastic dynamics progressively embeds one of the saddle cycles as the modulation index is varied.
机译:基于直接调制激光二极管的速率方程描述,我们研究了出现在设备输出功率中的间歇性脉冲的起源。激光器输出最大幅度突然下降是这种现象的特征,这种现象出现在调制指数变化时出现的周期加倍序列中。通过对这种行为的研究,本文揭示了调制激光二极管对噪声极度敏感的原因。使用分岔理论技术,我们解释了不稳定的周期解和设备的固有噪声如何在引起这些突发的机制中起关键作用。本文表明,该机制由两个基本阶段组成,这两个阶段被称为捕获和重新注入。当我们弄清这两个阶段的起源时,每个阶段所涉及的不同时标也会被确定。从此分析中,我们可以得出结论,间歇性脉冲串是过程的特征性标志,随着调制指数的变化,激光随机动力学逐渐嵌入其中一个鞍形循环。

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