论文标题

扭曲的双层WSE $ _ {2} $的激子吸收特征通过电子损失光谱法

Excitonic Absorption Signatures of Twisted Bilayer WSe$_{2}$ by Electron Energy-Loss Spectroscopy

论文作者

Woo, Steffi Y., Zobelli, Alberto, Schneider, Robert, Arora, Ashish, Preuß, Johann A., Carey, Benjamin J., de Vasconcellos, Steffen Michaelis, Palummo, Maurizia, Bratschitsch, Rudolf, Tizei, Luiz H. G.

论文摘要

Moiré扭曲角度基于扭曲的范德华杂质和同型结构中激子的层间相互作用。扭曲角度对扭曲双层钨的抗震颤吸收的影响(WSE $ _ {2} $)已使用电子能量光谱法研究了。通过扫描透射电子显微镜进行原子分辨率成像来确定关键的结构参数,包括相对扭曲角度和堆叠顺序的纳米级测量。详细的频谱分析显示,与AA $^{\ prime} $堆叠相比,高能激发峰C中有明显的蓝光升高,高达200 meV。与单声道WSE $ _ {2} $相比,已经讨论了相对于AA $^{\ prime} $堆叠的双层WSE $ _ {2} $的介电响应的第一原则计算的实验发现,与单层WSE $ _ {2} $相比激子过渡的集合,因此在先前的计算之间存在任何差异。此外,跨度功能理论(DFT)计算出的$ \ sim $ \ sim $ 9.5-46.5 $^{\ circ} $的旋转角度的电子结构展开了,显示了在$ q $ $ $ $ $ $ $ Q $的最小变化和最小值的上层式带式上的频率变化。合并的实验/理论研究为扭曲双层中的高能吸收共振的物理起源提供了宝贵的见解,这使得能够跟踪层间耦合从吸收光谱通过吸收量C Transitions Transitions的演变的演变。

Moiré twist angle underpins the interlayer interaction of excitons in twisted van der Waals hetero- and homo-structures. The influence of twist angle on the excitonic absorption of twisted bilayer tungsten diselenide (WSe$_{2}$) has been investigated using electron energy-loss spectroscopy. Atomic-resolution imaging by scanning transmission electron microscopy was used to determine key structural parameters, including the nanoscale measurement of the relative twist angle and stacking order. Detailed spectral analysis revealed a pronounced blueshift in the high-energy excitonic peak C with increasing twist angle, up to 200 meV when compared to the AA$^{\prime}$ stacking. The experimental findings have been discussed relative to first-principle calculations of the dielectric response of the AA$^{\prime}$ stacked bilayer WSe$_{2}$ as compared to monolayer WSe$_{2}$ by employing the \textit{GW} plus Bethe-Salpeter equation (BSE) approaches, resolving the origin of higher energy spectral features from ensembles of excitonic transitions, and thus any discrepancies between previous calculations. Furthermore, the electronic structure of moiré supercells spanning twist angles of $\sim$9.5-46.5$^{\circ}$ calculated by density functional theory (DFT) were unfolded, showing an uplifting of the conduction band minimum near the $Q$ point and minimal change in the upper valence band concurrently. The combined experiment/theory investigation provides valuable insight into the physical origins of high-energy absorption resonances in twisted bilayers, which enables to track the evolution of interlayer coupling from tuning of the exciton C transitions by absorption spectroscopy.

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