论文标题

声子辅助 - valley散射决定了摩西的超快激发动力学$ _2 $ biLayers

Phonon-assisted inter-valley scattering determines ultrafast exciton dynamics in MoSe$_2$ bilayers

论文作者

Helmrich, Sophia, Sampson, Kevin, Huang, Di, Selig, Malte, Hao, Kai, Tran, Kha, Achstein, Alexander, Young, Carter, Knorr, Andreas, Malic, Ermin, Woggon, Ulrike, Owschimikow, Nina, Li, Xiaoqin

论文摘要

尽管固体的所有带结构中都存在山谷(能量极值),但它们在确定原子较薄的过渡金属二甲化合物(TMDC)中的激子共振和动态方面的重要作用是唯一的。使用二维连贯的电子光谱,我们发现激子的分解在Mose $ _2 $ BiLayers的时间尺度上比单层更快。我们进一步确定了双层中的两个种群放松渠道,一个连贯和不连贯的渠道。我们的显微镜模型表明,声子排放过程有助于从$ k $ valley到其他低能$γ$和$λ$ valleys的散射事件。我们合并的实验和理论研究明确地建立了不同的显微镜机制,这些机制决定了TMDC单层和双层中的激子量子动力学。了解激子量子动力学为操纵TMDC双层中的自旋/山谷自由度的操纵提供了关键的指导。

While valleys (energy extrema) are present in all band structures of solids, their preeminent role in determining exciton resonances and dynamics in atomically thin transition metal dichalcogenides (TMDC) is unique. Using two-dimensional coherent electronic spectroscopy, we find that exciton decoherence occurs on a much faster time scale in MoSe$_2$ bilayers than that in the monolayers. We further identify two population relaxation channels in the bilayer, a coherent and an incoherent one. Our microscopic model reveals that phonon-emission processes facilitate scattering events from the $K$ valley to other lower energy $Γ$ and $Λ$ valleys in the bilayer. Our combined experimental and theoretical studies unequivocally establish different microscopic mechanisms that determine exciton quantum dynamics in TMDC monolayers and bilayers. Understanding exciton quantum dynamics provides critical guidance to manipulation of spin/valley degrees of freedom in TMDC bilayers.

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