Chang Lee Victor, Yue Lun, Gaarde Mette B, Chan Yang-Hao, Qiu Diana Y
Department of Mechanical Engineering and Materials Science, Yale University, New Haven, CT, USA.
Energy Science Institute, Yale University, New Haven, CT, USA.
Nat Commun. 2024 Jul 24;15(1):6228. doi: 10.1038/s41467-024-50534-3.
Many-body effects play an important role in enhancing and modifying optical absorption and other excited-state properties of solids in the perturbative regime, but their role in high harmonic generation (HHG) and other nonlinear response beyond the perturbative regime is not well-understood. We develop here an ab initio many-body method to study nonperturbative HHG based on the real-time propagation of the non-equilibrium Green's function with the GW self energy. We calculate the HHG of monolayer MoS and obtain good agreement with experiment, including the reproduction of characteristic patterns of monotonic and nonmonotonic harmonic yield in the parallel and perpendicular responses, respectively. Here, we show that many-body effects are especially important to accurately reproduce the spectral features in the perpendicular response, which reflect a complex interplay of electron-hole interactions (or exciton effects) in tandem with the many-body renormalization and Berry curvature of the independent quasiparticle bandstructure.
多体效应在微扰区域增强和改变固体的光吸收及其他激发态性质方面起着重要作用,但其在高次谐波产生(HHG)及微扰区域之外的其他非线性响应中的作用尚未得到充分理解。我们在此开发了一种基于具有GW自能的非平衡格林函数实时传播来研究非微扰HHG的从头算多体方法。我们计算了单层MoS₂的HHG,并与实验取得了良好的一致性,包括分别再现了平行和垂直响应中单调和非单调谐波产率的特征模式。在此,我们表明多体效应对于准确再现垂直响应中的光谱特征尤为重要,这些光谱特征反映了电子 - 空穴相互作用(或激子效应)与独立准粒子能带结构的多体重整化和贝里曲率的复杂相互作用。