论文标题
三粒子状态和掺杂的MOS $ _2 $单层中的Intervelley激子的亮度
Three-particle states and brightening of intervalley excitons in a doped MoS$_2$ monolayer
论文作者
论文摘要
二维过渡金属二盐(TMDC)的光谱受复杂的多粒子激子状态的影响。他们的理论分析需要解决多体问题,在大多数情况下,这是非常复杂的。在这项工作中,我们通过在TAMM-Dancoff近似中的三粒子哈密顿量的对角度进行对角度来计算光谱,在该近似中,通过Pauli阻断机制来解释掺杂效应,该机制在动量空间中以离散的网格建模。从{\ it ab intio}计算中提取单粒子基。获得的三粒子本征态,相应的过渡偶极基质元素用于计算线性吸收光谱作为掺杂水平的函数。负面掺杂的MOS $ _2 $单层(ML)的结果与可用的实验数据达成了极好的定量协议,从而验证了我们的方法。该结果预测了由于Intervalley激子在未依存的ML中光学深色而导致的其他光谱特征,但被掺杂亮了。我们的方法可以应用于许多其他原子较薄的半导体,在此掺杂诱导的许多粒子状态也将被预计。
Optical spectra of two-dimensional transition-metal dichalcogenides (TMDC) are influenced by complex multi-particle excitonic states. Their theoretical analysis requires solving the many-body problem, which in most cases, is prohibitively complicated. In this work, we calculate the optical spectra by exact diagonalization of the three-particle Hamiltonian within the Tamm-Dancoff approximation where the doping effects are accounted for via the Pauli blocking mechanism, modelled by a discretized mesh in the momentum space. The single-particle basis is extracted from the {\it ab initio} calculations. Obtained three-particle eigenstates and the corresponding transition dipole matrix elements are used to calculate the linear absorption spectra as a function of the doping level. Results for negatively doped MoS$_2$ monolayer (ML) are in an excellent quantitative agreement with the available experimental data, validating our approach. The results predict additional spectral features due to the intervalley exciton that is optically dark in an undoped ML but is brightened by the doping. Our approach can be applied to a plethora of other atomically thin semiconductors, where the doping induced brightening of the many-particle states is also anticipated.