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Microcavity electrodynamics of hybrid surface plasmon polariton modes in high-quality multilayer trench gratings

机译:高质量多层沟槽光栅中混合表面等离子体激元模式的微腔电动力学

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摘要

In common plasmonic structures, absorption and radiation losses are often mutually restricted and can seriously influence the device performance. The current study presents a compound structure composed of multilayer grating stripes and multilayer shallow trenches. A small depth was adopted for the trench configuration to exclude the extra bend loss. These two sections supported Fabry–Perot resonance and cavity modes, respectively, with hybrid modes formed through intercoupling. In addition, the total loss for the entire framework was clearly reduced due to the introduction of the trench geometry, indicating that both absorption and radiation losses were successfully taken into consideration in the compound structure. Significantly, such a low loss realized by the hybridization of surface plasmon polariton modes has rarely been seen before. Moreover, the debatable relationship between the total and partial quality factors was described for the first time based on a hybrid mode analysis to establish a new approach to investigate the different resonance modes. In the detailed calculation process, the relative electric field intensity was first adopted to stipulate the effective areas for the various modes, which is more reasonable than using the common definition that is based on a unit structure. The multilayer trench grating exhibited a relatively low loss without weakening energy localization, which is significant in the design of plasmonic devices.
机译:在常见的等离激元结构中,吸收和辐射损耗通常相互制约,并会严重影响器件性能。当前的研究提出了一种由多层光栅条纹和多层浅沟槽组成的复合结构。沟槽配置采用较小的深度以排除额外的弯曲损耗。这两个部分分别支持Fabry-Perot共振模式和腔模式,并通过互耦形成混合模式。另外,由于引入了沟槽几何形状,整个框架的总损耗明显减少,这表明在复合结构中成功地考虑了吸收损耗和辐射损耗。值得注意的是,以前很少见到通过表面等离激元极化子模式的杂交实现的低损耗。此外,首次基于混合模式分析描述了总质量因数和部分质量因数之间的可争论关系,以建立研究不同共振模式的新方法。在详细的计算过程中,首先采用相对电场强度来规定各种模式的有效面积,这比使用基于单元结构的通用定义更为合理。多层沟槽光栅在不削弱能量局部化的情况下表现出相对较低的损耗,这在等离激元器件的设计中很重要。

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