论文标题
单层MOS $ _ {2} $中带负电荷和中性激子的精细结构
Fine structure of negatively charged and neutral excitons in monolayer MoS$_{2}$
论文作者
论文摘要
我们介绍了高质量的单层MOS $ _ {2} $的实验和理论结果,这些结果揭示了带电激子的精细结构,即Trions。在发射光谱中,我们可以解决并确定两个Trion峰,T $ _ {1} $和T $ _ {2} $,类似于Trion Trion Peaks(T $ _S $和T $ _ {T} $)对Tungsten材料的一对和Triplet Trion峰(T $ _S $和T $ _ {T} $)。然而,在依赖极化的光致发光测量中,我们将这些峰鉴定为新型的valley singlet Trions,构成了与旋转轨道耦合所诱导的较大传导带散布的trion细胞结构不同的结构。我们表明,MOS $ _ {2} $中的Trion Energy分裂是对谷内和瓦尔利载体交互的敏感探针。在理论上的额外支持下,我们声称这些单线Trions的存在与异常的激子G-Factor结合在一起,并且发射光谱的特征温度依赖性同时表明单层MOS $ _ {2} $具有深色的激发型接地状态,尽管具有“明亮的”单粒子单粒子安排自旋旋转传导频带。
We present experimental and theoretical results on the high-quality single-layer MoS$_{2}$ which reveal the fine structure of charged excitons, i.e., trions. In the emission spectra we resolve and identify two trion peaks, T$_{1}$ and T$_{2}$, resembling the pair of singlet and triplet trion peaks (T$_S$ and T$_{T}$) in tungsten-based materials. However, in polarization-dependent photoluminescence measurements we identify these peaks as novel intra- and inter-valley singlet trions, constituting the trion fine structure distinct from that already known in bright and dark 2D materials with large conduction-band splitting induced by the spin-orbit coupling. We show that the trion energy splitting in MoS$_{2}$ is a sensitive probe of inter- and intra-valley carrier interaction. With additional support from theory we claim that the existence of these singlet trions combined with an anomalous excitonic g-factor and the characteristic temperature dependence of the emission spectra together suggest that monolayer MoS$_{2}$ has a dark excitonic ground state, despite having "bright" single-particle arrangement of spin-polarized conduction bands.