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Spectral characteristics of coupled resonators

机译:耦合谐振器的光谱特性

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In devices consisting of a large number of coupled resonators, the coupling coefficients are unlikely to be identical throughout the ensemble, owing to statistical fluctuations in the fabrication process, the surrounding environment, or the device operation process. We describe how the frequency spectrum of such a disordered device differs from that of earlier models that assume a perfectly ordered lattice of resonant elements. Based on simulations for a large number of nominally identical resonators perturbed by disorder in the coupling coefficients, we describe the change in the density of modes (resonances) using both Hermitian and non-Hermitian coupling pathways, following recent experimental demonstrations. The band-edge zero-group-velocity state is highly sensitive to disorder, and applications that rely on band-edge effects, such as ultraslow light and group-velocity dispersion compensation, may be strongly impacted. (c) 2006 Optical Society of America.
机译:在由大量耦合谐振器组成的设备中,由于制造过程,周围环境或设备操作过程中的统计波动,耦合系数在整个集合中不太可能相同。我们将描述这种无序设备的频谱与假定谐振元件的晶格完美有序的早期模型的频谱差异。基于对耦合系数无序扰动的大量名义上相同的谐振器的仿真,在最近的实验演示之后,我们使用埃尔米特和非埃尔米特耦合路径描述了模态密度(谐振)的变化。频带边缘零组速度状态对无序状态非常敏感,依赖频带边缘效应的应用(例如超慢光和组速度色散补偿)可能会受到严重影响。 (c)2006年美国眼镜学会。

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