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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >A coupled-mode model for the Fabry-Perot semiconductor laser kink instability
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A coupled-mode model for the Fabry-Perot semiconductor laser kink instability

机译:Fabry-Perot半导体激光扭折不稳定性的耦合模式模型

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This paper derives a coupled-mode Fabry-Perot semiconductor laser model from the longitudinal-mode laser rate equations with parabolic gain dispersion. Truncating the full coupled-mode model permits stability analysis of the Fabry-Perot laser kink instability, which is a mode hop with increasing current. Two mechanisms contribute to the mode hop: the Silberberg-Bar-Joseph instability transports energy from higher frequencies to lower frequencies and gain dispersion stops the energy transport. Numerical simulations have shown that higher order carrier modes are excited during intervals of energy transport among the optical modes. These numerical results suggest that modes greatly detuned from the peak gain affect the laser dynamics.
机译:本文从具有抛物线增益色散的纵向模式激光速率方程推导了耦合模式Fabry-Perot半导体激光器模型。截断全耦合模式模型可以对Fabry-Perot激光扭折不稳定性进行稳定性分析,这是随着电流增加而产生的模式跳变。导致模式跳变的有两种机制:Silberberg-Bar-Joseph不稳定性将能量从较高的频率传输到较低的频率,而增益色散则停止了能量传输。数值模拟表明,在光学模式之间的能量传输间隔期间,高阶载流子模式被激发。这些数值结果表明,与峰值增益大大失谐的模式会影响激光动力学。

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