首页> 外文会议>Conference on Semiconductor Lasers and Laser Dynamics; 20040427-20040430; Strasbourg; FR >Dynamics and bifurcations of a semiconductor laser with short external cavity
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Dynamics and bifurcations of a semiconductor laser with short external cavity

机译:外腔短的半导体激光器的动力学和分叉

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摘要

We present a theoretical study into the dynamics and bifurcations of a semiconductor laser subject to delayed optical feedback, as modelled by the Lang-Kobayashi equations. For the case of a short external cavity, of the order of a few centimeters, there is a limited number of external cavity modes (ECMs), which makes it possible to apply advanced techniques from dynamical systems, such as the continuation of ECMs and their bifurcations, and the computation of unstable manifolds. From the physical point of view, a short cavity is characterized by the fact that the delay time in the external cavity is of the same order of magnitude as the period of the relaxation oscillation of the laser. In this regime the optical feedback phase is known to play an important role. We provide a detailed overview of how the dynamics depends on the feedback phase, which is in good agreement with recent experimental measurements.
机译:正如Lang-Kobayashi方程所模拟的那样,我们对受延迟光反馈的半导体激光器的动力学和分叉问题进行了理论研究。对于短外腔(几厘米量级)的情况,外腔模式(ECM)的数量有限,这使得可以应用动态系统中的先进技术,例如ECM的延续及其应用分叉,以及不稳定流形的计算。从物理角度来看,短腔的特征在于外腔中的延迟时间与激光器的弛豫振荡的周期处于相同数量级。在这种情况下,光反馈阶段起着重要作用。我们提供了动力学如何取决于反馈阶段的详细概述,这与最近的实验测量结果非常吻合。

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