Yong Chaw-Keong, Utama M Iqbal Bakti, Ong Chin Shen, Cao Ting, Regan Emma C, Horng Jason, Shen Yuxia, Cai Hui, Watanabe Kenji, Taniguchi Takashi, Tongay Sefaattin, Deng Hui, Zettl Alex, Louie Steven G, Wang Feng
Department of Physics, University of California at Berkeley, Berkeley, CA, USA.
Department of Materials Science and Engineering, University of California at Berkeley, Berkeley, CA, USA.
Nat Mater. 2019 Oct;18(10):1065-1070. doi: 10.1038/s41563-019-0447-8. Epub 2019 Aug 5.
The Berry phase of Bloch states can have profound effects on electron dynamics and lead to novel transport phenomena, such as the anomalous Hall effect and the valley Hall effect. Recently, it was predicted that the Berry phase effect can also modify the exciton states in transition metal dichalcogenide monolayers, and lift the energy degeneracy of exciton states with opposite angular momentum through an effective valley-orbital coupling. Here, we report the observation and control of the Berry phase-induced splitting of the 2p exciton states in monolayer molybdenum diselenide (MoSe) using the intraexciton optical Stark spectroscopy. We observe the time-reversal-symmetric analogue of the orbital Zeeman effect resulting from the valley-dependent Berry phase, which leads to energy difference of +14 (-14) meV between the 2p and 2p exciton states in the K (K') valley, consistent with the ordering from our ab initio GW-Bethe-Salpeter equation results. In addition, we show that the light-matter coupling between intraexciton states is remarkably strong, leading to a prominent valley-dependent Autler-Townes doublet under resonant driving. Our study opens up pathways to coherently manipulate the quantum states and excitonic excitation with infrared radiation in two-dimensional semiconductors.
布洛赫态的贝里相位可对电子动力学产生深远影响,并导致诸如反常霍尔效应和谷霍尔效应等新奇的输运现象。最近,有人预测贝里相位效应还能改变过渡金属二硫族化合物单层中的激子态,并通过有效的谷 - 轨道耦合消除具有相反角动量的激子态的能量简并。在此,我们报告了利用激子内光学斯塔克光谱对单层硒化钼(MoSe)中2p激子态的贝里相位诱导分裂进行的观测与控制。我们观测到了由谷依赖的贝里相位导致的轨道塞曼效应的时间反演对称类似物,这使得K(K')谷中2p和2p激子态之间的能量差为 +14(-14)meV,与我们基于第一性原理的GW - 贝里 - 萨尔皮特方程结果的排序一致。此外,我们表明激子内态之间的光 - 物质耦合非常强,在共振驱动下导致显著的谷依赖的奥特勒 - 汤斯双峰。我们的研究开辟了在二维半导体中用红外辐射相干操纵量子态和激子激发的途径。