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Properties of quantum dots coupled to plasmons and optical cavities

机译:耦合到等离子体和光学腔的量子点的性质

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摘要

Quantum electrodynamics is rapidly finding a set of new applications in thresholdless lasing, photochemistry, and quantum entanglement due to the development of sophisticated patterning techniques to couple nanoscale photonic emitters with photonic and plasmonic cavities. Colloidal and epitaxial semiconductor nanocrystals or quantum dots (QDs) are promising candidates for emitters within these architectures but are dramatically less explored in this role than are molecular emitters. This perspective reviews the basic physics of emitter-cavity coupling in the weak-to-strong coupling regimes, describes common architectures for these systems, and lists possible applications (in particular, photochemistry), with a focus on the advantages and issues associated with using QDs as the emitters. Published under license by AIP Publishing.
机译:由于开发具有光子和等离子体腔的纳米级光子发射器的复杂的图案化技术,Quantum电动电动迅速找到一组阈值激光,光化学和量子缠结的新应用。 胶体和外延半导体纳米晶体或量子点(QDS)是这些架构内发射器的候选者,但在这种角色中的探讨显着较低,而不是分子发射器。 这个透视措辞审查了弱势耦合制度中发射器孔耦合的基本物理,描述了这些系统的常见架构,并列出了可能的应用程序(特别是光明),重点关注与使用相关的优点和问题 QDS作为发射器。 通过AIP发布在许可证下发布。

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