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Long-lived photoluminescence polarization of localized excitons in liquid exfoliated monolayer enriched WS2

机译:液体去角质单层富含局部激子的长寿命的光致发光极化富集WS2

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摘要

Monolayer transition metal dichalcogenides (TMDs) constitute a family of materials, in which coupled spin-valley physics can be explored and which could find applications in novel optoelectronic devices. However, before applications can be designed, a scalable method of monolayer extraction is required. Liquid phase exfoliation is a technique providing large quantities of the monolayer material, but the spin-valley properties of thus obtained TMDs are unknown. In this work, we employ steady-state and time-resolved photoluminescence (PL)to investigate the relaxation dynamics of localized excitons (LXs) in liquid exfoliated WS2. The results reveal that the circular polarization lifetime of the PL exceeds by at least an order of magnitude the PL lifetime. A rate equations model allows us to reproduce quantitatively the experimental data and to conclude that the observed large and long-lived PL polarization originates from efficient trapping of free excitons at localization sites hindering the intervalley relaxation. Furthermore, our results show that the depolarization process is inefficient for LXs. We discuss various mechanisms leading to this effect such as suppression of intervalley scattering of the LXs or inefficient spin relaxation of the holes.
机译:单层过渡金属二均甲基化物(TMDS)构成物质,其中可以探索耦合的旋转谷物理学,并且可以在新型光电器件中找到应用。然而,在设计应用之前,需要一种可伸缩的单层提取方法。液相剥离是提供大量单层材料的技术,但是由此获得的TMD的旋转谷特性未知。在这项工作中,我们采用稳态和时间分辨的光致发光(PL)来研究液体剥落WS2中局部激动子(LXS)的弛豫动态。结果表明,PL的圆极化寿命超过PL寿命的至少一个数量级。速率方程模型允许我们定量地再现实验数据,并得出观察到的大型和长寿命的PL偏振源自在妨碍inchalley弛豫的定位位点的自由激子的有效诱捕。此外,我们的结果表明,LXS的去极化过程效率低。我们讨论了各种机制,导致这种效果,例如抑制界限的LXS或低效旋转的速度散射。

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