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Analysis of line shapes and strong coupling with intersubband transitions in one-dimensional metallodielectric photonic crystal slabs

机译:一维金属电介质光子晶体平板的线形和带间跃迁的强耦合分析

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This work reports a detailed study of quasi-guided mode resonances in metallodielectric photonic crystal slabs, focusing on the interaction with the intersubband transition supported by a multiple quantum well embedded in the photonic crystal itself. The strong light-matter coupling regime is obtained at room temperature in the mid-infrared spectral range, and its spectral fingerprints are analyzed in the framework of a Fano line-shape model. We propose an estimate of the light-matter coupling coefficient for arbitrarily shaped resonant cavities embedding multiple quantum wells supporting intersubband transitions, obtaining good agreement between theoretical calculations and experimental results.
机译:这项工作报告了对金属电介质光子晶体平板中准引导模式共振的详细研究,重点是与嵌入在光子晶体本身中的多个量子阱所支持的子带间跃迁的相互作用。在室温下在中红外光谱范围内获得强光-质耦合机制,并在Fano线形模型的框架内分析其光谱指纹。我们提出了一个任意形状的谐振腔的光-质耦合系数的估计值,该谐振腔嵌入了支持子带间跃迁的多个量子阱,在理论计算和实验结果之间取得了良好的一致性。

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