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首页> 外文期刊>The Journal of Chemical Physics >Ab initio density functional theory applied to quasidegenerate problems
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Ab initio density functional theory applied to quasidegenerate problems

机译:从头算密度泛函理论应用于拟边生成问题

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Ab initio density functional theory(DFT),previously applied primarily at the second-order many-body perturbation theory(MBPT)level,is generalized to selected infinite-order effects by using a new coupled-cluster perturbation theory(CCPT).this is accomplished by redefining the unperturbed Hamiltonian in ab initio DFT to correspond to the CCPT2 orbital dependent functional.These methods are applied to the Be-isoelectronic systems as an example of a quasidegenerate system.The CCPT2 variant shows better convergence to the exact quantum Monte Carlo correlation potential for Be than any prior attempt.When using MBPT2,the semicanonical choice of unperturbed Hamiltonian,plays a critical role in determining the quality of the obtained correlation potentials and obtaining convergence,while the usual Kohn-Sham choice invariably diverges.However,without the additional infinite-order effects,introduced by CCPT2,the final potentials and energies are not sufficiently accurate.The issue of the effects of the single excitations on the divergence in ordinary OEP2 is addressed,and it is shown that,whereas their individual values are small,their infinite-order summation is essential to the good convergence of ab initio DFT.
机译:从头算术密度泛函理论(DFT)最初主要应用于二阶多体摄动理论(MBPT)级别,通过使用新的耦合簇摄动理论(CCPT)推广到选定的无穷阶效应。通过从头算DFT重新定义不受干扰的哈密顿量以对应于CCPT2轨道相关功能来完成这些方法,这些方法应用于Be等电子系统,作为一个准生成系统的例子.CCPT2变体显示出更好的收敛性,可以精确地实现量子蒙特卡罗相关使用MBPT2时,不受干扰的哈密顿量的半典范选择在确定获得的相关势的质量和获得收敛性方面起着至关重要的作用,而通常的Kohn-Sham选择总是会发散。由CCPT2引入的其他无穷阶效应,最终的势能和能量不够精确。研究了单次激发对普通OEP2的发散性的影响,结果表明,尽管它们的个体值较小,但它们的无穷大求和对于从头算DFT的良好收敛是必不可少的。

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