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Integration of two-dimensional transition metal dichalcogenides with Mie-resonant dielectric nanostructures

机译:二维过渡金属二均甲基与MIE-共振介电纳米结构的整合

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Integrating transition metal dichalcogenide (TMD) monolayers with dielectric nanostructures exhibiting Mie-like resonances opens a plethora of opportunities in manipulating their excitonic emission in the near-field and far-field regimes, yielding interactions spanning from weak to strong coupling regimes, and routing valley polarized chiral emission, to name just a few. Moreover, there is a completely new path unraveled recently by realizing dielectric resonators directly from TMDs, thus combining scatterer and emitter into a single entity. This hybrid configuration is promising to realize integrated active meta-optical devices in a facile manner. In this review article, we provide an overview of the state of the art on integrating monolayers of TMDs with Mie-resonant photonic nanostructures.
机译:将过渡金属二甲基化物(TMD)单层具有介电纳米结构,其呈现出类似的近距离的纳米结构,使其在近场和远场制革中操纵其兴趣排放的多种机会,从而产生跨越强耦合制度的跨越的相互作用,以及路由谷极化的手性发射,只有几个。此外,通过直接从TMDS实现介电谐振器,存在最近未解开的全新路径,从而将散射器和发射器组合成单个实体。该混合配置是有前途的,以便以容易方式实现集成的主动元光学器件。在本综述文章中,我们提供了在将TMDS与MIE共振光子纳米结构集成的最新技术的概述。

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