Kerr nonlinearity effect on the stability of Wannier-Stark states in active optical systems

Alexey Verbitskiy, Alexey Yulin
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Abstract

The paper provides an analytical and numerical investigation of the dynamics of a one-dimensional chain of coupled optical resonators with conservative cubic nonlinearity and the gain saturated by nonlinear losses. The linear dependency of the resonator eigenfrequencies on their indexes makes it possible to use Wannier-Stark states as lasing modes. Numerical simulations have shown that the dependency of the resonant frequencies on the light intensity strongly affects the stability of Wannier-Stark states. To explain the observed destabilization of monochromatic lasing based on Wannier-Stark states a simple perturbation theory has been developed and compared with the data obtained in the numerical simulations.
克尔非线性对有源光学系统中万尼尔-斯塔克态稳定性的影响
本文对具有保守立方非线性和增益饱和非线性损耗的一维耦合光学谐振器链的动态进行了分析和数值研究。谐振器的特征频率与它们的指数呈线性关系,这使得使用万尼尔-斯塔克态作为激光模式成为可能。数值模拟表明,谐振频率对光强的依赖性强烈影响了万尼尔-斯塔克态的稳定性。为了解释所观察到的基于万尼-斯塔克态的单色激光的不稳定性,我们提出了一个简单的扰动理论,并与数值模拟中获得的数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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