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Stability of locking in mutually delay-coupled semiconductor lasers

机译:相互延迟耦合的半导体激光器的锁定稳定性

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We investigate the continuous wave solutions of a system of two mutually delay coupled semiconductor lasers. These continuous wave solutions, which we refer to as compound laser modes (CLMs), are locked solutions of the coupled laser system where both lasers lase at a common frequency. We model the system by a set of delay differential rate equations, where we assume that, apart from a possible detuning in their free running optical frequencies, the lasers are identical. We show how the structure and the stability of the CLMs depend on the main parameters, namely, the feedback phase, the feedback rate, the pump parameter, and the detuning. We identify two mechanisms for creating CLMs. First, CLMs emerge from the off-state of the coupled laser system in Hopf bifurcations. Second, CLMs are created in pairs in saddle-node bifurcations. For the special case of zero detuning we also find pitchfork bifurcations that organize the CLM structure. We show in which parameter regions CLMs exist, where they are stable, and which bifurcation curves form the boundary of the stable locking region.
机译:我们研究了两个相互延迟耦合的半导体激光器系统的连续波解。这些连续波解决方案(我们称为复合激光模式(CLM))是耦合激光器系统的锁定解决方案,其中两个激光器都以相同的频率发射激光。我们通过一组延迟差分速率方程对系统进行建模,其中我们假设,除了自由运行的光学频率可能发生失谐外,激光器是相同的。我们展示了CLM的结构和稳定性如何取决于主要参数,即反馈相位,反馈速率,泵参数和失谐。我们确定了两种创建CLM的机制。首先,在Hopf分叉中,CLM从耦合激光系统的关闭状态出现。其次,在鞍节点分叉中成对创建CLM。对于零失谐的特殊情况,我们还发现了构成CLM结构的干草叉分叉。我们显示了在哪些参数区域中存在CLM,它们在哪里稳定,以及哪些分叉曲线形成了稳定锁定区域的边界。

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