Seidel Thomas G, Javaloyes Julien, Gurevich Svetlana V
Opt Lett. 2022 Jun 15;47(12):2979-2982. doi: 10.1364/OL.457777.
We elucidate the mechanisms that underlay the formation of temporal localized states and frequency combs in vertical external-cavity Kerr-Gires-Tournois interferometers. We reduce our first-principles model based upon delay algebraic equations to a minimal pattern formation scenario. It consists in a real cubic Ginzburg-Landau equation modified by high-order effects such as third-order dispersion and nonlinear drift, which are responsible for generating localized states via the locking of domain walls connecting the high and low intensity levels of the injected micro-cavity. We interpret the effective parameters of the normal form in relation with the configuration of the optical setup. Comparing the two models, we observe an excellent agreement close to the onset of bistability.
我们阐明了垂直外腔克尔-吉尔斯-图尔诺瓦干涉仪中时间局域态和频率梳形成的潜在机制。我们将基于延迟代数方程的第一性原理模型简化为一个最小模式形成方案。它由一个实立方金兹堡-朗道方程组成,该方程由三阶色散和非线性漂移等高阶效应修正,这些高阶效应通过连接注入微腔高低强度水平的畴壁锁定来产生局域态。我们根据光学装置的配置解释了范式的有效参数。比较这两个模型,我们发现在双稳性开始附近有很好的一致性。