论文标题

同心硅环谐振器中避免模式交叉附近的腔内场动力学

Intra-cavity field dynamics near avoided mode crossing in concentric silicon nitride ring resonator

论文作者

Saha, Maitrayee, Roy, Samudra, Varshney, Shailendra K.

论文摘要

了解被动微孔子系统中的腔内场动力学已经引人入胜。当系统复杂时,它会引人入胜,例如表现出避免模式交叉(AMC)的同心双微孔谐振器。在这项工作中,我们介绍了一项系统的研究,借助偶联的lugiato-lefever方程(LLE),对氮化硅微孔谐振器AMC附近的腔内振荡场动力学。我们确定两个区域。基于两个杂交模式的特征频率分离,弱耦合区域(WCR)和强耦合区域(SCR),该模式源自AMC附近的模式耦合。在WCR中,模式耦合效果是主导的,导致这两种模式以周期性的方式和其相位的非相同变化导致腔内功率振荡。在SCR中,模式耦合效应以两种模式的几乎相同的特征逐渐降低。我们通过半分析变异方法进一步验证了我们的数值发现,从而深入了解模式耦合诱导的动力学。我们最终分别在WCR和SCR中的Stokes参数和Jones矢量的帮助下分析了极化状态,并分析了极化锁定状态。

Understanding the intra-cavity field dynamics in passive microresonator systems has already been intriguing. It becomes fascinating when the system is complex, such as a concentric dual microring resonator that exhibit avoided mode crossing (AMC). In this work, we present a systematic study of intra-cavity oscillatory field dynamics near AMC in a concentric silicon nitride microring resonator with the help of the coupled Lugiato-Lefever equation (LLE). We identify two regions viz. weakly coupled region (WCR) and strongly coupled region (SCR) based on eigenfrequency separation of the two-hybrid modes, which originate from mode coupling near AMC. In WCR, the mode coupling effect is dominant, leading to intra-cavity power oscillation between these two modes in a periodic manner and non-identical variation of their phases. In SCR, the mode coupling effect reduces gradually with nearly identical characteristics of both the modes. We further verify our numerical findings with the semi-analytical variational method, leading to an in-depth understanding of the mode coupling induced dynamics. We finally analyze the polarization evolving state, and the polarization locked state with the help of Stokes parameters and Jones vectors in WCR and SCR, respectively.

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