物理
散射
拓扑(电路)
激光阈值
厄米矩阵
电磁学
电子线路
引力奇点
奇点
量子力学
激光器
数学
电气工程
工程类
几何学
工程物理
作者
Zarko Sakotic,P. Stanković,Vesna Crnojević‐Bengin,Alex Krasnok,Andrea Alù,Nikolina Janković
标识
DOI:10.48550/arxiv.2203.15196
摘要
Leveraging topological properties in the response of electromagnetic systems can greatly enhance their potential. Although the investigation of singularity-based electromagnetics and non-Hermitian electronics has considerably increased in recent years in the context of various scattering anomalies, their topological properties have not been fully assessed. In this work, we theoretically and experimentally demonstrate that non-Hermitian perturbations around bound states in the continuum can lead to singularities of the scattering matrix, which are topologically nontrivial and comply with charge conservation. The associated scattering matrix poles, zeros and pole-zero pairs delineate extreme scattering events, including lasing, coherent perfect absorption, and absorber-lasers. The presented framework enables a recipe for generation, annihilation and addition of these singularities in electric circuits, with potential for extreme scattering engineering across a broad range of the electromagnetic spectrum for sensing, wireless power transfer, lasing and thermal emission devices.
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