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首页> 外文期刊>The Journal of Chemical Physics >A computationally efficient exact pseudopotential method.Il.Application to the molecular pseudopotential of an excess electron interacting with tetrahydrofuran (THF)
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A computationally efficient exact pseudopotential method.Il.Application to the molecular pseudopotential of an excess electron interacting with tetrahydrofuran (THF)

机译:一种计算效率高的精确pot势方法.II。与四氢呋喃(THF)相互作用的过量电子在分子pseudo势中的应用

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摘要

In the preceding paper,we presented an analytic reformulation of the Phillips-Kleinman (PK)pseudopotential theory.In the PK theory,the number of explicitly treated electronic degrees of freedom in a multielectron problem is reduced by forcing the wave functions of the few electrons of interest (the valence electrons)to be orthogonal to those of the remaining electrons (the core electrons);this results in a new Schrodinger equation for the valence electrons in which the effects of the core electrons are treated implicitly via an extra term known as the pseudopotential.Although this pseudopotential must be evaluated iteratively,our reformulation of the theory allows the exact pseudopotential to be found without ever having to evaluate the potential energy operator,providing enormous computational savings.In this paper,we present a detailed computational procedure for implementing our reformulation of the PK theory,and we illustrate our procedure on the largest system for which an exact pseudopotential has been calculated,that of an excess electron interacting with a tetrahyrdrofuran (THF)molecule.We discuss the numerical stability of several approaches to the iterative solution for the pseudopotential,and find that once the core wave functions are available,the full e~- -THF pseudopotential can be calculated in less than 3 s on a relatively modest single processor.We also comment on how the choice of basis set affects the calculated pseudopotential,and provide a prescription for correcting unphysical behavior that arises at long distances if a localized Gaussian basis set is used.Finally,we discuss the effective e~- -THF potential in detail,and present a multisite analytic fit of the potential that is suitable for use in molecular simulation.
机译:在前面的文章中,我们提出了菲利普斯-克莱曼(PK)伪电势理论的解析式。在PK理论中,通过强制几个电子的波函数来减少多电子问题中明确处理的电子自由度的数量。 (价电子)与其余电子(核心电子)正交;这将为价电子生成一个新的Schrodinger方程,其中通过一个额外的术语称为隐式处理了核心电子的作用尽管必须反复评估该伪势,但我们对该理论的重新编写使得无需评估势能算子就可以找到精确的伪势,从而节省了大量计算量。在本文中,我们提出了一种详细的计算程序来实现我们对PK理论的重新表述,并举例说明了我们在最大系统上的过程,其精确的p计算了一个伪电子,一个多余的电子与一个四氢呋喃(THF)分子相互作用。计算了伪电子迭代解的几种方法的数值稳定性,并发现一旦核心波函数可用,全电子-THF假电位可以在相对适中的单个处理器上在不到3 s的时间内计算出来。我们还评论了基集的选择如何影响所计算的假电位,并提供了矫正长距离出现的非物理行为的处方最后,我们详细讨论了有效的e〜-THF电位,并提出了适用于分子模拟的电位的多点分析拟合。

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