论文标题

在被动模式锁定的半导体激光器中离散的轻弹

Discrete Light Bullets in Passively Mode-Locked Semiconductor Lasers

论文作者

Seidel, Thomas G., Perego, Auro M., Javaloyes, Julien, Gurevich, Svetlana V.

论文摘要

在本文中,我们分析了一个被动模式锁定的激光器阵列中离散光弹(DLB)的形成和动力学特性,这些激光器通过响起的几何形状在evanemensecent磁场中耦合。使用基于最接近邻轴耦合的Haus Master方程系统的通用模型,我们以数值为单位显示了DLB的存在,以实现不同的耦合强度。为了降低分析的复杂性,我们通过减少了DLBS横向轮廓动力学的离散方程组的简化组合来近似整个问题。这种有效的理论使我们能够通过路径接触方法进行详细的分叉分析。特别是,我们显示了离散局部状态(DLSS)的多稳定分支的存在,与数组中不同数量的活动元素相对应。这些分支要么彼此独立,要么被组织成一个蛇形分叉图,其中DLS的宽度通过连续增加和增益的过程增长。揭示了可以将蛇分支作为第二个参数创建和破坏的机制,例如,线宽增强因子或耦合强度各不相同。为了增加耦合,还展示了移动明亮和深色DLSS的存在。

In this paper, we analyze the formation and dynamical properties of discrete light bullets (dLBs) in an array of passively mode-locked lasers coupled via evanescent fields in a ring geometry. Using a generic model based upon a system of nearest-neighbor coupled Haus master equations we show numerically the existence of dLBs for different coupling strengths. In order to reduce the complexity of the analysis, we approximate the full problem by a reduced set of discrete equations governing the dynamics of the transverse profile of the dLBs. This effective theory allows us to perform a detailed bifurcation analysis via path-continuation methods. In particular, we show the existence of multistable branches of discrete localized states (dLSs), corresponding to different number of active elements in the array. These branches are either independent of each other or are organized into a snaking bifurcation diagram where the width of the dLS grows via a process of successive increase and decrease of the gain. Mechanisms are revealed by which the snaking branches can be created and destroyed as a second parameter, e.g., the linewidth enhancement factor or the coupling strength are varied. For increasing couplings, the existence of moving bright and dark dLSs is also demonstrated.

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