论文标题
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Coexistence of coupling-induced transparency and absorption of transmission signals in magnon-mediated photon-photon coupling
论文作者
论文摘要
耦合诱导的透明度(CIT)和磁介导的光子光子光子耦合信号的吸收(CIA)的共存是在由Yttrium Irchnet膜(YIG)膜和三个同心倒置环形环共聚物(ISRRRRRRRRRRRRRRRRRRRRM)组成的平面混合结构中实验确定的。同时CIA和CIA现象的实验性观察归因于镁介导的光子光子光子偶联,在单独脱钩的ISRR之间。为了捕获观察到的相互作用的通用物理学,我们基于相干和耗散性多路径相互作用之间的平衡构建了适当的分析模型,这些模型可以准确地从单个混合系统中观察到CIT和CIA。这项工作有希望地为设计高效,灵活且可控制的光子磁通设备的设计提供指导,这些设备对目前正在开发的量子技术的应用很高。
Coexistence of coupling-induced transparency (CIT) and absorption (CIA) of signals in magnon-mediated photon-photon coupling was experimentally determined in a planar hybrid structure consisting of a yttrium iron garnet (YIG) film and three concentric inverted-split-ring resonators (ISRRs). The experimental observation of simultaneous CIT and CIA phenomena was ascribed to magnon-mediated photon-photon coupling between the individually decoupled ISRRs. In order to capture the generic physics of the observed interactions, we constructed an appropriate analytical model based on the balance between the coherent and dissipative multiple-paths interactions, which model precisely reproduced both the CIT and CIA experimentally observed from a single hybrid system. This work, promisingly, can provide guidance for design of efficient, flexible, and well-controllable photon-magnonic devices that are highly in demand for applications to quantum technologies currently under development.