论文标题

具有特殊表面的灵敏度增强和抑制的实验性实现

Experimental realization of sensitivity enhancement and suppression with exceptional surfaces

论文作者

Qin, Guoqing, Xie, Ranran, Zhang, Hao, Hu, Yunqi, Wang, Min, Xu, Haitan, Lei, Fuchuan, Ruan, Dong, Long, Gui-Lu

论文摘要

通过在孤立的特殊点附近准备传感器系统,可以从非热性中获得受益的灵敏度的大大增强。但是,这是以降低系统灵活性为代价的,这对于实际应用至关重要。通过将特殊点推广到特殊的表面,从理论上讲,最近提出了增强的灵敏度和灵活性。在这里,我们在实验上证明了在非铁感光子传感系统中的一个特殊表面,该系统由窃窃私语 - - 助手模式微孔子和两个纳米纤维波导组成,从而在两个退化的反向物模式之间通过外部光学隔离器在两种退化的反向物模式之间产生单向耦合。该系统简单,坚固,可以在特殊的表面周围轻松操作。一方面,我们通过监测小扰动引起的谐振频率分裂来观察到灵敏度的增强。异常的表面增强灵敏度的这种演示为实用的非热感应应用铺平了道路。另一方面,我们还首次显示了在特殊表面周围分裂的抑制。

By preparing a sensor system around isolated exceptional points, one can obtain a great enhancement of the sensitivity benefiting from the non-Hermiticity. However, this comes at the cost of reduction of the flexibility of the system, which is critical for practical applications. By generalizing the exceptional points to exceptional surfaces, it has been theoretically proposed recently that enhanced sensitivity and flexibility can be combined. Here, we experimentally demonstrate an exceptional surface in a non-Hermitian photonic sensing system, which is composed of a whispering-gallery-mode microresonator and two nanofiber waveguides, resulting in a unidirectional coupling between two degenerate counter-propagating modes with an external optical isolator. The system is simple, robust, and can be easily operated around an exceptional surface. On the one hand, we observe sensitivity enhancement by monitoring the resonant frequency splitting caused by small perturbations. This demonstration of exceptional-surface-enhanced sensitivity paves the way for practical non-Hermitian sensing applications. On the other hand, we also show the suppression of frequency splitting around the exceptional surface for the first time.

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