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Spatio-temporal dynamics of gain-guided semiconductor laser arrays

机译:增益引导半导体激光器阵列的时空动力学

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摘要

A continuous model based on the coupled field-matter Maxwell-Bloch equations for a two-level homogeneously broadened single mode laser is developed. The model includes a Langevin formulation to model thermal and spontaneous emission noises and accounts for carrier diffusion, optical field diffraction and current spreading. Our model is flexible enough to simulate any gain-guided longitudinally uniform laser geometry and is applied to both a single-stripe and a four-stripe gain-guided semiconductor lasers where the influence of the injection current, the interstripe distance and carrier diffusion is discussed within the context of the laser dynamics. We show that an array operating with quasi-independent stripes may be achieved at low pumps and larger interstripe distances. However, as injection current is increased or the interstripe distance is decreased, the device passes through a variety of dynamical instabilities which can be analyzed in the context of lateral cavity modes. Moreover, we also show that the array dynamics is strongly influenced by carrier diffusion which may also lead to different thresholds for each element of the array.
机译:建立了基于耦合场物质麦克斯韦-布洛赫方程的两级均匀加宽单模激光器的连续模型。该模型包括一个Langevin公式,用于对热和自发辐射噪声进行建模,并说明了载流子扩散,光场衍射和电流扩散。我们的模型足够灵活,可以模拟任何增益引导的纵向均匀激光几何形状,并且适用于单条纹和四条纹增益引导半导体激光器,其中讨论了注入电流,条间距离和载流子扩散的影响在激光动力学范围内。我们表明,在低泵和较大的条带间距下可以实现具有准独立条纹的阵列。但是,随着注入电流的增加或条带间距离的减小,该器件会经历各种动态不稳定性,可以在侧腔模式的背景下对其进行分析。此外,我们还表明,阵列动力学受到载流子扩散的强烈影响,这也可能导致阵列中每个元素的阈值不同。

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