SELF-CONSISTENT IMPLEMENTATION OF NONLOCAL EXCHANGE AND CORRELATION IN A GAUSSIAN DENSITY-FUNCTIONAL METHOD

被引:68
作者
MLYNARSKI, P [1 ]
SALAHUB, DR [1 ]
机构
[1] UNIV MONTREAL,DEPT CHIM,MONTREAL H3C 3J7,QUEBEC,CANADA
来源
PHYSICAL REVIEW B | 1991年 / 43卷 / 02期
关键词
D O I
10.1103/PhysRevB.43.1399
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The gradient-expansion approximation (GEA) and the generalized gradient approximation (GGA) to nonlocal exchange energy in concert with the nonlocal correlation energy functional of Perdew [Phys. Rev. B 33, 8822 (1986)] are analyzed when implemented in a fully self-consistent way in conjunction with the Vosko-Wilk-Nusair parametrization for the local exchange-correlation energy. It is shown that the lowest-order gradient expansion, even with corrected asymptotic behavior in the large-density-gradient limit, is still unsatisfactory in the chemically important region of electron densities where the basic assumption of the GEA (\DELTA-n\/2k(F)n < 1) breaks down. In contrast, the GGA expansion behaves better. A shift by a constant additive term of an effective one-body Kohn-Sham potential in concert with the GGA nonlocal functional provides, within the framework of density-functional theory, a way of interpreting excitation energies. The nonlocal functionals significantly improve binding energies. The resulting nonlocal exchange-correlation potential is state independent; thus the present method is convenient from the computational point of view. Applications are presented for a number of atoms and small molecules, including O2, Mg2, CH2, and for a transition-metal cluster, Ni4.
引用
收藏
页码:1399 / 1410
页数:12
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