论文标题
杂交IntervalleyMoiré激子和扁平乐队中的平坦乐队
Hybridized intervalley moiré excitons and flat bands in twisted WSe$_2$ bilayers
论文作者
论文摘要
原子薄的2D材料中的较大的地表与体积比可以通过修改其环境来有效调整其性能。将两个单层堆叠到双层中的人工堆叠导致层定位的波函数的重叠,从而导致兴奋子态的扭曲角依赖性杂交。在这项联合理论实验研究中,我们证明了层间杂交对扭曲的WSE $ _2 $双层中明亮和动量黑暗激子的影响。特别是,我们表明,在$λ$点上的电子的强杂交导致了动量黑暗k- $λ$ iCciton的急剧红移,并伴随着在小扭曲角上出现平坦的moiréexciton带的出现。我们直接比较了理论上的预测和实验测量的光谱,使我们能够鉴定出来自层杂交深度激子的声子辅助重组所产生的光致发光信号。此外,我们预测了由扭曲的双层晶格的莫伊尔电势产生的其他光谱特征的出现。
The large surface-to-volume ratio in atomically thin 2D materials allows to efficiently tune their properties through modifications of their environment. Artificial stacking of two monolayers into a bilayer leads to an overlap of layer-localized wave functions giving rise to a twist angle-dependent hybridization of excitonic states. In this joint theory-experiment study, we demonstrate the impact of interlayer hybridization on bright and momentum-dark excitons in twisted WSe$_2$ bilayers. In particular, we show that the strong hybridization of electrons at the $Λ$ point leads to a drastic redshift of the momentum-dark K-$Λ$ exciton, accompanied by the emergence of flat moiré exciton bands at small twist angles. We directly compare theoretically predicted and experimentally measured optical spectra allowing us to identify photoluminescence signals stemming from phonon-assisted recombination of layer-hybridized dark excitons. Moreover, we predict the emergence of additional spectral features resulting from the moiré potential of the twisted bilayer lattice.