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一种通过基于物理的排斥修正得到的改进密度矩阵泛函。

An improved density matrix functional by physically motivated repulsive corrections.

作者信息

Gritsenko Oleg, Pernal Katarzyna, Baerends Evert Jan

机构信息

Afdeling Theoretische Chemie, Vrije Universiteit, De Boelelaan 1083, 1081 HV Amsterdam, The Netherlands.

出版信息

J Chem Phys. 2005 May 22;122(20):204102. doi: 10.1063/1.1906203.

Abstract

An improved density matrix functional [correction to Buijse and Baerends functional (BBC)] is proposed, in which a hierarchy of physically motivated repulsive corrections is employed to the strongly overbinding functional of Buijse and Baerends (BB). The first correction C1 restores the repulsive exchange-correlation (xc) interaction between electrons in weakly occupied natural orbitals (NOs) as it appears in the exact electron pair density rho(2) for the limiting two-electron case. The second correction C2 reduces the xc interaction of the BB functional between electrons in strongly occupied NOs to an exchange-type interaction. The third correction C3 employs a similar reduction for the interaction of the antibonding orbital of a dissociating molecular bond. In addition, C3 applies a selective cancellation of diagonal terms in the Coulomb and xc energies (not for the frontier orbitals). With these corrections, BBC still retains a correct description of strong nondynamical correlation for the dissociating electron pair bond. BBC greatly improves the quality of the BB potential energy curves for the prototype few-electron molecules and in several cases BBC reproduces very well the benchmark ab initio potential curves. The average error of the self-consistent correlation energies obtained with BBC3 for prototype atomic systems and molecular systems at the equilibrium geometry is only ca. 6%.

摘要

提出了一种改进的密度矩阵泛函[对Buijse和Baerends泛函(BBC)的修正],其中对Buijse和Baerends(BB)的强过束缚泛函采用了一系列基于物理的排斥修正。第一个修正C1恢复了弱占据自然轨道(NO)中电子之间的排斥交换-相关(xc)相互作用,这在极限双电子情况下的精确电子对密度rho(2)中出现。第二个修正C2将BB泛函中强占据NO中电子之间的xc相互作用降低为交换型相互作用。第三个修正C3对解离分子键的反键轨道的相互作用采用类似的降低。此外,C3对库仑能和xc能中的对角项进行选择性抵消(前沿轨道除外)。通过这些修正,BBC仍然保留了对解离电子对键的强非动态相关性的正确描述。BBC大大提高了原型少电子分子的BB势能曲线的质量,并且在几种情况下,BBC能很好地重现基准从头算势能曲线。在平衡几何构型下,用BBC3获得的原型原子系统和分子系统的自洽相关能的平均误差仅约为6%。

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