A self-consistent DFT+DMFT scheme in the projector augmented wave method: applications to cerium, Ce2O3 and Pu2O3 with the Hubbard I solver and comparison to DFT+U

被引:84
作者
Amadon, B. [1 ]
机构
[1] CEA, DIF, DAM, F-91297 Arpajon, France
关键词
MEAN-FIELD THEORY; ELECTRONIC-STRUCTURE CALCULATIONS; BAND THEORY; GAMMA-CE; DENSITY APPROXIMATION; CORRELATED SYSTEMS; WANNIER-FUNCTIONS; CRYSTAL-STRUCTURE; PHASE-TRANSITION; ALPHA-CE;
D O I
10.1088/0953-8984/24/7/075604
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
An implementation of full self-consistency over the electronic density in the DFT + DMFT framework on the basis of a plane wave-projector augmented wave (PAW) DFT code is presented. It allows for an accurate calculation of the total energy in DFT + DMFT within a plane wave approach. In contrast to frameworks based on the maximally localized Wannier function, the method is easily applied to f electron systems, such as cerium, cerium oxide (Ce2O3) and plutonium oxide (Pu2O3). In order to have a correct and physical calculation of the energy terms, we find that the calculation of the self-consistent density is mandatory. The formalism is general and does not depend on the method used to solve the impurity model. Calculations are carried out within the Hubbard I approximation, which is fast to solve, and gives a good description of strongly correlated insulators. We compare the DFT + DMFT and DFT + U solutions, and underline the qualitative differences of their converged densities. We emphasize that in contrast to DFT + U, DFT + DMFT does not break the spin and orbital symmetry. As a consequence, DFT + DMFT implies, on top of a better physical description of correlated metals and insulators, a reduced occurrence of unphysical metastable solutions in correlated insulators in comparison to DFT + U.
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页数:13
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