论文标题
单层WS $ _2 $中动量分辨的激动分子观察
Momentum-resolved observation of exciton formation dynamics in monolayer WS$_2$
论文作者
论文摘要
过渡金属二分法中激子形成的动力学很难在实验中测量,因为光带光谱无法访问许多动量 - 独立的激动激素状态。在这里,我们将一个可调泵,高谐波探测激光源与3D动量成像技术相结合,以映射单层WS $ _2 $的光电电子电子。这为超快时间尺度上激发态提供了动量,能量和时间分辨的访问。设置的高时间分辨率使我们能够在其内在时间尺度上追踪早期激子动力学,并观察到光激发后几十秒秒的动量的黑暗k $σ$ conciton的形成。通过调谐激发能,我们操纵相干激子极化的时间演化,并观察其对深色激子形成的影响。实验结果与完全显微镜理论非常吻合,从而解决了WS $ _2 $中明亮和深色激子的时间和光谱动力学。
The dynamics of exciton formation in transition metal dichalcogenides is difficult to measure experimentally, since many momentum-indirect exciton states are not accessible to optical interband spectroscopy. Here, we combine a tuneable pump, high-harmonic probe laser source with a 3D momentum imaging technique to map photoemitted electrons from monolayer WS$_2$. This provides momentum-, energy- and time-resolved access to excited states on an ultrafast timescale. The high temporal resolution of the setup allows us to trace the early-stage exciton dynamics on its intrinsic timescale and observe the formation of a momentum-forbidden dark K$Σ$ exciton a few tens of femtoseconds after optical excitation. By tuning the excitation energy we manipulate the temporal evolution of the coherent excitonic polarization and observe its influence on the dark exciton formation. The experimental results are in excellent agreement with a fully microscopic theory, resolving the temporal and spectral dynamics of bright and dark excitons in WS$_2$.