School of Computer Science and Electronic Engineering, University of Essex, Wivenhoe Park, Colchester, CO4 3SQ, United Kingdom.
Department of Mathematical Sciences, University of Essex, Wivenhoe Park, Colchester, CO4 3SQ, United Kingdom.
Sci Rep. 2018 Jan 8;8(1):109. doi: 10.1038/s41598-017-18379-7.
We report here for the first time (to our knowledge), a new and universal mechanism by which a two-element laser array is locked to external optical injection and admits stably injection-locked states within a nontrivial trapezoidal region. The rate equations for the system are studied both analytically and numerically. We derive a simple mathematical expression for the locking conditions, which reveals that two parallel saddle-node bifurcation branches, not reported for conventional single lasers subject to optical injection, delimit the injection locking range and its width. Important parameters are the linewidth enhancement factor, the laser separation, and the frequency offset between the two laterally-coupled lasers; the influence of these parameters on locking conditions is explored comprehensively. Our analytic approximations are validated numerically by using a path continuation technique as well as direct numerical integration of the rate equations. More importantly, our results are not restricted by waveguiding structures and uncover a generic locking behavior in the lateral arrays in the presence of injection.
我们首次(据我们所知)报告了一种新的通用机制,通过该机制,两个元件的激光阵列被锁定到外部光注入,并在非平凡的梯形区域内稳定地引入注入锁定状态。该系统的速率方程进行了分析和数值研究。我们推导出了锁定条件的简单数学表达式,该表达式表明,两个平行的鞍结分岔分支限制了注入锁定范围及其宽度,而对于传统的受光注入的单激光器,并未报道过这种分支。重要参数是线宽增强因子、激光分离和两个横向耦合激光器之间的频率偏移;全面探讨了这些参数对锁定条件的影响。我们的解析近似值通过使用路径延续技术以及速率方程的直接数值积分得到了数值验证。更重要的是,我们的结果不受波导结构的限制,并揭示了存在注入时横向阵列中的通用锁定行为。