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Spatio-Temporal Dynamics and Fluctuations in Quantum Dot Lasers: Mesoscopic Theory and Modeling

机译:量子点激光器的时空动态和波动:介观理论和建模

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We present a mesoscopic theory for the spatio-temporal carrier- and light field dynamics in quantum dot lasers based on spatially resolved semiconductor Bloch equations describing the dynamics of electrons and holes in each quantum dot. The Bloch equations are dynamically coupled to spatially resolved wave equations for the counterpropagating light fields and to a diffusion equation describing the carrier dynamics in the wetting layer of the quantum dot laser. These quantum dot Maxwell-Bloch equations (QD-MBEs) self-consistently consider the dynamic changes in the carrier distributions and the inter-level dipoles together with the spatially varying carrier-light field dynamics. Intradot scattering via emission and absorption of phonons, as well as the scattering with the carriers and phonons of the surrounding wetting layer are dynamically included on a mesoscopic level. Spatial fluctuations in size and energy levels of the quantum dots and irregularities in the spatial positioning of the quantum dots in the laser structure are simulated via statistical methods. Numerical simulations on the basis of the QD-MBEs reveal a complex carrier dynamics and a characteristic interplay of spontaneous and stimulated emission. For a specific set of QD-parameters the results of the modeling allow an analysis and interpretation of e.g. saturation effects and dynamic pulse shaping in quantum dot lasers.
机译:我们基于空间分辨的半导体Bloch方程向量子点激光器中的时空载波和光场动态的介于介绍理论,其描述了每个量子点中的电子和孔的动态。 BLOCH方程被动态地耦合到用于反向的光场的空间分辨的波动方程,以及描述量子点激光器的润湿层中的载波动态的扩散方程。这些量子点Maxwell-Bloch方程(QD-MBES)自始终考虑载波分布和级别的偶极区的动态变化以及空间变化的载波光场动态。通过发射和吸收声子的引槽散射,以及与周围润湿层的载体的散射和围绕润湿层的声子被动态地包括在介面镜片水平上。通过统计方法模拟了激光结构中量子点的量子点的空间点和不规则性的空间波动。基于QD-MBE的数值模拟显示复杂的载体动态和自发发射的特征相互作用。对于特定的QD参数集,建模结果允许分析和解释例如。量子点激光器中的饱和效应和动态脉冲整形。

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