Li Ru-Song, Xie Zheng, Kong Ling-Yun, Hou Su-Xia, Luo Ji-Jun, Xin Du-Qiang
Shaanxi Engineering Research Center of Controllable Neutron Source, School of Science, Xijing University, Xi'an 710123, China.
Phys Chem Chem Phys. 2021 Jul 14;23(27):14725-14736. doi: 10.1039/d1cp01149a.
In order to reveal the correlation effect on the electronic properties in particular 5f electron occupation numbers of Pu/U ions in a (Pu,U) mixed oxide-PuUO4, a first principles calculation is performed by using density functional theory (DFT) plus a dynamical mean field theory (DMFT) scheme with the spin-orbit coupling (SOC) and on-site Coulomb repulsion for correlation effect due to localized Pu/U 5f orbitals. Results demonstrate that Pu/U 5f electron occupation numbers in the ground state of PuUO4 are mainly composed of 5f4/5f5 and 5f2/5f3 configurations, and exhibiting the intermediate occupation (IO) numbers with average 5f occupation numbers of about nf = 4.879 and 2.423 for Pu and U ions, respectively, irrespective of different Pu and U lattice sites in PuUO4. Pu 5f j = 5/2 and j = 7/2 components are in moderately and weakly correlated states, respectively, while U 5f j = 5/2 and j = 7/2 manifolds are both in weakly correlated states. jj and LS coupling schemes are feasible for Pu and U 5f electrons, respectively. In order to directly compare with the experimental angle-resolved photoemission spectrum (ARPES), we also estimate the momentum-resolved electronic spectrum function for this system.
为了揭示在(钚,铀)混合氧化物 - 钚铀氧化物(PuUO₄)中钚/铀离子的电子性质,特别是5f电子占据数的相关效应,采用密度泛函理论(DFT)加上动态平均场理论(DMFT)方案,并考虑自旋轨道耦合(SOC)以及由于局域化的钚/铀5f轨道引起的在位库仑排斥,进行了第一性原理计算。结果表明,PuUO₄基态中的钚/铀5f电子占据数主要由5f⁴/5f⁵和5f²/5f³构型组成,并且呈现出中间占据(IO)数,钚和铀离子的平均5f占据数分别约为nf = 4.879和2.423,与PuUO₄中不同的钚和铀晶格位置无关。钚的5f j = 5/2和j = 7/2分量分别处于中等和弱相关状态,而铀的5f j = 5/2和j = 7/2多重态均处于弱相关状态。jj和LS耦合方案分别适用于钚和铀的5f电子。为了直接与实验角分辨光电子能谱(ARPES)进行比较,我们还估计了该系统的动量分辨电子谱函数。