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单层WS与等离子体锯齿形纳米狭缝阵列耦合的偏振共振发射。

Polarized resonant emission of monolayer WS coupled with plasmonic sawtooth nanoslit array.

作者信息

Han Chunrui, Ye Jianting

机构信息

Institute of Microelectronics, Chinese Academy of Sciences, 100029, Beijing, China.

Device Physics of Complex Materials, Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.

出版信息

Nat Commun. 2020 Feb 5;11(1):713. doi: 10.1038/s41467-020-14597-2.

Abstract

Transition metal dichalcogenide (TMDC) monolayers have enabled important applications in light emitting devices and integrated nanophotonics because of the direct bandgap, spin-valley locking and highly tunable excitonic properties. Nevertheless, the photoluminescence polarization is almost random at room temperature due to the valley decoherence. Here, we show the room temperature control of the polarization states of the excitonic emission by integrating WS monolayers with a delicately designed metasurface, i.e. a silver sawtooth nanoslit array. The random polarization is transformed to linear when WS excitons couple with the anisotropic resonant transmission modes that arise from the surface plasmon resonance in the metallic nanostructure. The coupling is found to enhance the valley coherence that contributes to ~30% of the total linear dichroism. Further modulating the transmission modes by optimizing metasurfaces, the total linear dichroism of the plasmon-exciton hybrid system can approach 80%, which prompts the development of photonic devices based on TMDCs.

摘要

过渡金属二硫属化物(TMDC)单层由于其直接带隙、自旋-谷锁定和高度可调的激子特性,在发光器件和集成纳米光子学中实现了重要应用。然而,由于谷退相干,室温下的光致发光极化几乎是随机的。在这里,我们展示了通过将WS单层与精心设计的超表面(即银锯齿形纳米狭缝阵列)集成,在室温下控制激子发射的极化状态。当WS激子与金属纳米结构中表面等离子体共振产生的各向异性共振传输模式耦合时,随机极化转变为线性极化。发现这种耦合增强了谷相干性,其对总线性二向色性的贡献约为30%。通过优化超表面进一步调制传输模式,等离子体-激子混合系统的总线性二向色性可以接近80%,这推动了基于TMDCs的光子器件的发展。

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