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Operations of Semiconductor Lasers under Optical Feedback with Linewidth Enhancement Factor

机译:具有线宽增强因子的光反馈下半导体激光器的操作

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We investigate numerically influence of linewidth enhancement factor and injection current on the route to chaos and associated operation states of semiconductor lasers subject to optical feedback. Numerical solutions of a time-delay rate equations are employed to construct bifurcation diagrams. The simulation result shows that changes in the linewidth enhancement factor cause important changes in the route to chaos and the laser states. The state of the laser is identified into six distinct regimes, namely, continuous wave, periodic oscillation, period doubling or two, period-three, period-four oscillations and chaos, which is depending on the linewidth enhancement factor, optical feedback strength and injection current level. Decreasing the injection current and increasing the linewidth enhancement factor stimulate the laser to be more stable and operate in continuous and periodic oscillations.
机译:我们调查线宽增强因子和喷射电流对混沌路线的数值影响,以及经过光学反馈的半导体激光器的相关操作状态。采用时间延迟率方程的数值解构造分叉图。仿真结果表明,线宽增强因子的变化导致混沌和激光状态的路线中的重要变化。激光的状态被识别为六个不同的制度,即连续波,周期性振荡,期间双倍或两次,三次,时段 - 四个振荡和混沌,这取决于线宽增强因子,光学反馈强度和注射当前水平。降低喷射电流并增加线宽增强因子刺激激光更稳定并以连续和周期性振荡操作。

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