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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Dispersive self-Q-switching in DFB lasers-theory versus experiment
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Dispersive self-Q-switching in DFB lasers-theory versus experiment

机译:DFB激光器中的色散自Q切换-理论与实验

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The single-mode model of dispersive self-Q-switching is extended to lasers containing a phase tuning section. The parameter set used for modeling is taken from independent measurements on existing self-pulsating devices. Detuning of the Bragg wavelengths by current induced heating is found, and this effect is included in the model. Calculated self-pulsation characteristics were compared quantitatively with experimental results on the device. A very good correspondence between theory and experiment is obtained, e.g., for conditions generating self-pulsations and for the frequency-current dependence. Dispersive self-Q-switching thus is confirmed as the responsible mechanism for high frequency DFB type self-pulsations. The modeling further shows that the delay between the stimulated emission within the device and the radiation of photons from the facets plays an important role for keeping the pulsations running.
机译:色散自Q开关的单模模型扩展到包含相位调谐部分的激光器。用于建模的参数集取自对现有自脉冲设备的独立测量。发现通过电流感应加热使布拉格波长失谐,并且该效应包括在模型中。将计算出的自脉动特性与设备上的实验结果进行定量比较。例如,对于产生自脉动的条件和频率-电流相关性,理论和实验之间获得了很好的对应。因此,色散自调Q被确认为高频DFB型自脉动的负责机制。该模型还表明,设备内受激发射与来自小平面的光子辐射之间的延迟对于保持脉动运行起着重要作用。

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