论文标题

多节DFB激光器中的特殊点奇异点

Exceptional Point Singularities in Multi-Section DFB Lasers

论文作者

Shahmohammadi, Mehran, Süess, Martin J., Peretti, Romain, Kapsalidis, Filippos, Forrer, Andres, Beck, Mattias, Faist, Jérôme

论文摘要

激光既表现出可控的增益和损失,在适当的设计条件下,是理想的非热门系统,允许直接观察和工程频谱奇异点(例如特殊点(EPS))。双截面分布式反馈(DFB)量子级联激光器(QCL)是这样的系统的原型,可以将腔favity fabry-perot(FP)模式的梯子控制到四分之一波动的DFB模式。调谐耦合强度和这两组模式之间的增益差,可以探测从弱耦合到强耦合的机制,并对特殊点奇异点的强劲观察。在这些特殊点上,激光表现出一系列激光和相干性疗程吸收动力学1,2泵送高于透明度时。此外,泵送方案允许故意解除特殊的点退化。这些结果表明,二元部分QCL是研究出色点的理想平台,因为可以在单个设备中调整耦合参数和系统损耗。

A laser exhibits both controllable gain and loss and, under proper design conditions, is an ideal non-Hermitian system allowing the direct observation and engineering of spectral singularities such as exceptional points (EPs). A dual section distributed feedback (DFB) quantum cascade laser (QCL) is a prototype of such a system, allowing the controlled coupling of a ladder of cavity Fabry-Perot (FP) modes to a quarter wave shifted DFB mode. Tuning the coupling strength and the gain difference between these two set of modes enables probing the regimes from weak coupling to strong coupling and the robust observation of exceptional point singularities. At these exceptional points, the laser exhibits a sequence of lasing and coherent prefect absorption dynamics1,2 when pumped above transparency. Additionally, the pumping scheme allows the deliberate lifting of the exceptional point degeneracy. These results show that dual section QCL is a perfect platform to study exceptional points because the coupling parameter and system loss can be tuned in a single device.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源