论文标题

高阶特殊点的层次结构

Hierarchical construction of higher-order exceptional points

论文作者

Zhong, Q., Kou, J., Ozdemir, S. K., El-Ganainy, R.

论文摘要

高阶特殊点(HOEP)的实现可以导致超出当前基本限制以外的光结合相互作用的数量级增强。不幸的是,由于对制造缺陷的复杂性和敏感性,在现有方案中实施HOEP是一项相当艰巨的任务。在这里,我们介绍了一种层次结构方法,用于工程光子结构,其HOEP易于构建,并且对实验不确定性更具弹性。我们通过一个涉及平价时间(PT)对称光学微孔谐振器的示例来演示我们的技术,并在每个谐振器的内部光学模式之间进行手性耦合。有趣的是,我们发现在该系统中实现HOEP不需要统一的耦合曲线 - 该功能意味着HOEP从疾病中出现并为某些制造错误提供了弹性。通过在现实的光学材料系统中使用基于麦克斯韦方程的全波仿真来确认我们的结果。

The realization of higher-order exceptional points (HOEPs) can lead to orders of magnitude enhancement in light-matter interactions beyond the current fundamental limits. Unfortunately, implementing HOEPs in the existing schemes is a rather difficult task, due to the complexity and sensitivity to fabrication imperfections. Here we introduce a hierarchical approach for engineering photonic structures having HOEPs that are easier to build and more resilient to experimental uncertainties. We demonstrate our technique by an example that involves parity-time (PT) symmetric optical microring resonators with chiral coupling among the internal optical modes of each resonator. Interestingly, we find that the uniform coupling profile is not required to achieve HOEPs in this system -- a feature that implies the emergence of HOEPs from disorder and provides resilience against some fabrication errors. Our results are confirmed by using full-wave simulations based on Maxwell's equation in realistic optical material systems.

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