Kas J J, Rehr J J, Devereaux T P
Department of Physics, University of Washington, Seattle, Washington 98195-1560, USA.
Department of Photon Science, SLAC National Accelerator Laboratory, Menlo Park, California 94025, USA.
Phys Rev Lett. 2022 May 27;128(21):216401. doi: 10.1103/PhysRevLett.128.216401.
The treatment of electronic correlations in open-shell systems is among the most challenging problems of condensed matter theory. Current approximations are only partly successful. Ligand-field multiplet theory has been widely successful in describing intra-atomic correlation effects in x-ray spectra, but typically ignores itinerant states. The cumulant expansion for the one-electron Green's function has been successful in describing shake-up effects but ignores atomic multiplets. More complete methods, such as dynamic mean-field theory can be computationally demanding. Here, we show that separating the dynamic Coulomb interactions into local and longer-range parts with ab initio parameters yields a combined multiplet-plus-cumulant approach that accounts for both local atomic multiplets and satellite excitations. The approach is illustrated in transition metal oxides and explains the multiplet peaks, charge-transfer satellites, and distributed background features observed in XPS experiment.
开壳层体系中电子关联的处理是凝聚态物质理论中最具挑战性的问题之一。目前的近似方法仅取得了部分成功。配体场多重态理论在描述X射线光谱中的原子内关联效应方面已取得广泛成功,但通常忽略了巡游态。单电子格林函数的累积量展开在描述振激效应方面取得了成功,但忽略了原子多重态。更完整的方法,如动态平均场理论,计算量可能很大。在此,我们表明,利用从头算参数将动态库仑相互作用分离为局部和长程部分,可产生一种结合多重态加累积量的方法,该方法既能考虑局部原子多重态,又能考虑卫星激发。该方法在过渡金属氧化物中得到了说明,并解释了XPS实验中观察到的多重态峰、电荷转移卫星峰和分布背景特征。