首页> 外文期刊>The Journal of Chemical Physics >EXCHANGE AND CORRELATION ENERGY IN DENSITY FUNCTIONAL THEORY - COMPARISON OF ACCURATE DENSITY FUNCTIONAL THEORY QUANTITIES WITH TRADITIONAL HARTREE-FOCK BASED ONES AND GENERALIZED GRADIENT APPROXIMATIONS FOR THE MOLECULES LI-2, N-2, F-2
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EXCHANGE AND CORRELATION ENERGY IN DENSITY FUNCTIONAL THEORY - COMPARISON OF ACCURATE DENSITY FUNCTIONAL THEORY QUANTITIES WITH TRADITIONAL HARTREE-FOCK BASED ONES AND GENERALIZED GRADIENT APPROXIMATIONS FOR THE MOLECULES LI-2, N-2, F-2

机译:密度泛函理论中的交换和相关能量-精确密度泛函理论量与传统基于HARTREE-FOCK的ONES和广义梯度近似的分子LI-2,N-2,F-2的比较

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The density functional definition of exchange and correlation differs from the traditional one. In order to calculate the density functional theory (DFT), quantities accurately, molecular Kohn-Sham (KS) solutions have been obtained from ab initio wave functions for the homonuclear diatomic molecules Li-2, N-2, F-2. These afford the construction of the KS determinant Psi(S) and the calculation of its total electronic energy E-KS and the kinetic, nuclear-attraction and Coulomb repulsion components T-S, V, W-H as well as the (DFT) exchange energy E-x and correlation energy E-c. Comparison of these DFT quantities has been made on one hand with the corresponding Hartree-Fock (HF) quantities and on the other hand with local density approximation (LDA) and generalized gradient approximation (GGA). Comparison with HF shows that the correlation errors in the components T, V, and W-H Of the total energy are much larger for HF than KS determinantal wave functions. However, the total energies E-KS and E-HF appear to be close to each other, as well as the exchange energies E-x and E-x(HF) and correlation energies E-c and E-c(HF). The KS determinantal wave function and the KS orbitals therefore correspond to much improved kinetic and Coulombic energies, while having only a slightly larger total correlation energy. It is stressed that these properties of the Kohn-Sham orbitals make them very suitable for use in the molecular orbital theories of chemistry. Comparison of the accurate Kohn-Sham exchange and correlation energies with LDA and GGA shows that the GGA exchange energies are consistently too negative, while the GGA correlation energies are not negative enough. It is argued that the GGA exchange functionals represent effectively not only exchange, but also the molecular non-dynamical correlation, while the GGA correlation functionals represent dynamical correlation only. (C) 1997 American Institute of Physics. [References: 54]
机译:交换和相关的密度函数定义与传统的不同。为了计算密度泛函理论(DFT),准确地从同核双原子分子Li-2,N-2,F-2的从头算波函数获得了分子Kohn-Sham(KS)解决方案。这些提供了KS行列式Psi(S)的构造以及其总电子能量E-KS的计算以及动,核吸引和库仑排斥分量TS,V,WH以及(DFT)交换能量Ex和相关能量Ec。这些DFT量一方面与相应的Hartree-Fock(HF)量进行了比较,另一方面与局部密度近似(LDA)和广义梯度近似(GGA)进行了比较。与HF的比较表明,HF的总能量中分量T,V和W-H的相关误差比KS行列式函数大得多。然而,总能量E-KS和E-HF似乎彼此接近,以及交换能E-x和E-x(HF)以及相关能E-c和E-c(HF)。因此,KS行列式波函数和KS轨道对应于大大改善的动能和库仑能,而总相关能却稍大。需要强调的是,Kohn-Sham轨道的这些特性使其非常适合用于化学的分子轨道理论。精确的Kohn-Sham交换能量和相关能量与LDA和GGA的比较表明,GGA交换能量始终太负,而GGA相关能量还不够负。有人认为,GGA交换功能不仅有效地表示交换,而且还表示分子的非动态相关性,而GGA相关功能仅表示动态的相关性。 (C)1997美国物理研究所。 [参考:54]

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