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Nonlinear Dynamics of Semiconductor Lasers Under Repetitive Optical Pulse Injection

机译:重复光脉冲注入下半导体激光器的非线性动力学

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摘要

In this paper, nonlinear dynamics of semiconductor lasers under repetitive optical pulse injection are studied numerically. Different dynamical states, including pulsation and oscillation states, are found by varying the intensity and the repetition rate of the injection pulses. The laser is found to enter the chaotic pulsation (CP) states and chaotic oscillation (CO) states through individual period-doubling routes. Mapping and corresponding Lyapunov exponents of these dynamical states are plotted and examined in the parameter space. Moreover, the bandwidths of the chaos states found are investigated, where the bandwidths of the CP states observed at the strong injection regime are two to four times broader than the bandwidths of the CO states found at the weak injection regime. In this paper, frequency-locked states with different winding numbers, the ratio of the oscillation frequency, and the repetition frequency of the injection pulses are also studied. Both the cases for repetition frequency above and below the relaxation oscillation frequency are examined. The winding numbers of the frequency-locked states reveal a Devil's staircase structure, where a Farey tree showing the relations between the neighboring states is constructed.
机译:本文对重复激光脉冲下半导体激光器的非线性动力学进行了数值研究。通过改变注入脉冲的强度和重复率,可以找到不同的动力学状态,包括脉动状态和振荡状态。发现激光器通过单独的周期倍增路径进入混沌脉动(CP)状态和混沌振荡(CO)状态。在参数空间中绘制并检查了这些动态状态的映射和相应的Lyapunov指数。此外,研究了发现的混沌状态的带宽,其中在强注入状态下观察到的CP状态的带宽是在弱注入状态下观察到的CO状态的带宽的2至4倍。本文还研究了具有不同绕组数的锁频状态,振荡频率之比和注入脉冲的重复频率。研究了高于和低于弛豫振荡频率的重复频率的两种情况。锁频状态的绕组数显示了魔鬼的阶梯结构,其中构造了表示相邻状态之间关系的Farey树。

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