Wu Yulin, Zhou Peiji, Li Ting, Wan Weishi, Zou Yi
Opt Express. 2021 Feb 15;29(4):6080-6091. doi: 10.1364/OE.418644.
Exceptional points (EPs) could potentially enhance the sensitivity of an optical sensing system by orders of magnitude. Higher-order EP systems, having more complex physics, can further boost this parameter. In this paper, we investigate the response order of high-order non-Hermitian systems and provide a guideline for designing a sensor with high response order. Based on this design rule, we propose and demonstrate an optical sensor with a fourth-order response, and analyze its associated properties. The four resonant wavelengths of our optical sensor simultaneously collapse at a high-order exceptional point in the parameter space, providing a fourth root relation between the amount of wavelength splitting and the amplitude of the perturbation. A large sensitivity enhancement factor over 100, is observed when the wavelength splitting is compared with traditional single resonator-based sensors under small perturbation conditions.
例外点(EPs)有可能将光学传感系统的灵敏度提高几个数量级。具有更复杂物理特性的高阶EP系统可以进一步提升这一参数。在本文中,我们研究了高阶非厄米系统的响应阶数,并为设计具有高响应阶数的传感器提供了指导方针。基于此设计规则,我们提出并演示了一种具有四阶响应的光学传感器,并分析了其相关特性。我们的光学传感器的四个共振波长在参数空间中的一个高阶例外点处同时坍缩,在波长分裂量与微扰幅度之间提供了一个四次方根关系。在小扰动条件下,与传统的基于单谐振器的传感器相比,当比较波长分裂时,观察到了超过100的大灵敏度增强因子。