论文标题

对称统治的山谷 - 假卵形纹理的过渡金属二进制基因元素单层单层的纹理

Symmetry governed valley-pseudospin textures of the full-zone excitonic bands of transition-metal dichalcogenide monolayers

论文作者

Lo, Ping-Yuan, Peng, Guan-Hao, Li, Wei-Hua, Yang, Yi, Cheng, Shun-Jen

论文摘要

对于基于山谷的光子应用是可取的,在光兴奋的过渡金属元素单层(TMD-MLS)中保留激发子的高度山谷极化,但被广泛认为是由固有电子孔交换相互作用所阻碍的硬任务。在这项研究中,我们通过在对称分析的指导下求解了基于密度的功能理论(BSE),对整个Brillouin区域中的Valley偏振有限摩托子激素进行了全面研究。我们透露,有限的摩托车激子实际上完全不受交换引起的山谷去极化的影响,除了那些具有特定激子动量的那些与$3σ_V$和$ 3c_2'$ 3c_2'$ symmetries在TMD-MLS中的轴相吻合。受对称性的控制,在动量空间中,全区激元带的山谷伪旋转纹理是由单个Skyrmion的结构当地的,在这些结构中,高度高谷极化有限的有限摩托蛋白激体态以中心为中心。值得注意的是,我们表明,有限摩托子激子状态的山谷极化高度可以很好地转移到由此产生的声子辅助的光光射率中的光学极化,这表明这些基于谷化的光环中那些互VALLEY ICKITON的前瞻性实用性。

Preserving a high degree of valley polarization of excitons in photo-excited transition-metal dichalcogenide monolayers (TMD-MLs) is desirable for the valley-based photonic applications, but widely recognized as a hard task hindered by the intrinsic electron-hole exchange interaction. In this study, we present a comprehensive investigation of valley-polarized finite-momentum excitons in WSe$_2$-MLs over the entire Brillouin zone by solving the density-functional-theory(DFT)-based Bethe-Salpeter equation (BSE) under the guidance of symmetry analysis. We reveal that finite-momentum excitons are actually in general well immune from the exchange-induced valley depolarization, except for those with specific exciton momenta directionally coincide with the axes associated with the $3σ_v$ and $3C_2'$ symmetries in TMD-MLs. Governed by the symmetries, the valley pseudo-spin texture of the full-zone exciton band in the momentum space is locally featured by individual skyrmion-like structures where highly valley-polarized finite-momentum exciton states are centred. Remarkably, we show that the high degrees of valley polarizations of the finite-momentum exciton states are excellently well transferable to the optical polarizations in the resulting phonon-assisted photo-luminescences, suggesting the prospective usefulness of those inter-valley excitons in valley-based photonics.

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