论文标题
用注射锁的光子晶体激光阵列模拟局部库拉莫托模型
Emulating the local Kuramoto model with an injection-locked photonic crystal laser array
论文作者
论文摘要
Kuramoto模型是一个数学模型,用于描述耦合振荡器的集体同步现象。从理论上讲,我们证明了一系列耦合的光子晶体激光器以未删除的最近的邻居偶联(局部库拉莫托模型)模仿库拉莫托模型。我们的新型策略通过额外的冷腔使用激光器之间的间接耦合。通过在激光腔之间安装冷腔,我们避免了激光器的强耦合,并通过有效的非延迟耗散耦合实现理想的相互注射锁定。首先,在讨论了激光振荡的极限周期解释后,我们通过数值模拟耦合模式方程来证明两个间接耦合激光器的同步。其次,通过进行相减少分析,我们表明该设备中的激光动力学可以映射到局部库拉莫托模型。最后,我们简要证明了一系列间接耦合的光子晶体激光器实际上模仿了一维局部库拉莫托链。我们还认为,我们提出的结构由定期对齐的冷腔和激光腔组成,最好通过使用最先进的埋入多个量子井光子晶体来实现。
The Kuramoto model is a mathematical model for describing the collective synchronization phenomena of coupled oscillators. We theoretically demonstrate that an array of coupled photonic crystal lasers emulates the Kuramoto model with non-delayed nearest-neighbor coupling (the local Kuramoto model). Our novel strategy employs indirect coupling between lasers via additional cold cavities. By installing cold cavities between laser cavities, we avoid the strong coupling of lasers and realize ideal mutual injection-locking with effective non-delayed dissipative coupling. First, after discussing the limit cycle interpretation of laser oscillation, we demonstrate the synchronization of two indirectly coupled lasers by numerically simulating coupled-mode equations. Second, by performing a phase reduction analysis, we show that laser dynamics in the proposed device can be mapped to the local Kuramoto model. Finally, we briefly demonstrate that a chain of indirectly coupled photonic crystal lasers actually emulates the one-dimensional local Kuramoto chain. We also argue that our proposed structure, which consists of periodically aligned cold cavities and laser cavities, will best be realized by using state-of-the-art buried multiple quantum well photonic crystals.