论文标题

具有亚纳米探针的Moiré单位细胞内激子的高光谱成像

Hyperspectral imaging of excitons within a moiré unit-cell with a sub-nanometer electron probe

论文作者

Susarla, Sandhya, Naik, Mit H., Blach, Daria D., Zipfel, Jonas, Taniguchi, Takashi, Watanabe, Kenji, Huang, Libai, Ramesh, Ramamoorthy, da Jornada, Felipe H., Louie, Steven G., Ercius, Peter, Raja, Archana

论文摘要

二维Moiré系统中的电子和光激发对局部原子登记构成唯一敏感,从而导致材料和扭曲特定的特异性相关电子接地态具有不同程度的定位。但是,亚纳米结构与新兴的激子转变之间没有直接的实验相关性,包括紧密结合的光激发电子和孔。在这里,我们使用低温透射电子显微镜和光谱法来同时对WS2和WSE2单层旋转的异质结构中最低能量内的体内激子的结构重建和相关定位。结合光谱和AB的初始计算,我们确定激子质量中心波函数在空间中得到了强烈的调节,限于Moiré单位细胞中最高能量的堆叠位点的半径约2 nm,形成了三角形的晶格。我们的结果提供了直接的证据,表明原子重建导致强烈限制的Moiré潜力,而纳米级的工程压力将使新型的激子晶格具有新型类型。

Electronic and optical excitations in two-dimensional moiré systems are uniquely sensitive to local atomic registries, leading to materials- and twist-angle specific correlated electronic ground states with varied degree of localization. However, there has been no direct experimental correlation between the sub-nanometer structure and emergent excitonic transitions, comprising tightly-bound pairs of photoexcited electrons and holes. Here, we use cryogenic transmission electron microscopy and spectroscopy to simultaneously image the structural reconstruction and associated localization of the lowest-energy intralayer exciton in a rotationally aligned heterostructure of WS2 and WSe2 monolayers. In conjunction with optical spectroscopy and ab initio calculations, we determine that the exciton center-of-mass wavefunction is strongly modulated in space, confined to a radius of ~ 2 nm around the highest-energy stacking site in the moiré unit-cell, forming a triangular lattice. Our results provide direct evidence that atomic reconstructions lead to the strongly confining moiré potentials and that engineering strain at the nanoscale will enable new types of excitonic lattices.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源