论文标题
基于光学拉链腔的片上机械特殊点
On-chip mechanical exceptional points based on an optomechanical zipper cavity
论文作者
论文摘要
特殊点(EPS)代表了非热系统中的一种不同类型的光谱奇异性,最近已经研究了具有光学EPS的有趣的物理概念。作为一个超出光子学的系统,预计将进一步利用机械振荡器与许多物理系统的耦合,以进行机械传感,拓扑能量传递,非偏置动力学等,我们在这项研究中,我们证明了芯片机械EPS与硅的磁机械拉链循环循环循环,其中两个近级别的机械模式可通过coupolication a cou cou cou a cou cou cou cou a cou cou a cou a cou cou a cou。通过在两个机械振荡器之间定制耗散和相干耦合,成功地观察到了具有1/2阶次数响应的光谱分裂,这是EP的独特特征。我们的工作提供了一个集成平台,用于研究硅芯片上与机械EPS相关的物理学,并提出了它们在超敏度测量中的可能应用。
Exceptional points (EPs) represent a distinct type of spectral singularity in non-Hermitian systems, and intriguing physics concepts have been studied with optical EPs recently. As a system beyond photonics, the mechanical oscillators coupling with many physical systems are expected to be further exploited EPs for mechanical sensing, topology energy transfer, nonreciprocal dynamics etc. In this study, we demonstrated on-chip mechanical EPs with a silicon optomechanical zipper cavity, wherein two near-degenerate mechanical breathing modes are coupled via a single co-localized optical mode. By tailoring the dissipative and coherent couplings between two mechanical oscillators, the spectral splitting with 1/2 order response, a distinctive feature of EP, was observed successfully. Our work provides an integrated platform for investigating the physics related to mechanical EPs on silicon chips and suggests their possible applications for ultrasensitive measurements.