首页> 外文期刊>The Journal of Chemical Physics >An efficient generalized polyelectron population analysis in orbital spaces:The hole-expansion methodology
【24h】

An efficient generalized polyelectron population analysis in orbital spaces:The hole-expansion methodology

机译:轨道空间中高效的广义多电子种群分析:孔扩展方法

获取原文
获取原文并翻译 | 示例
           

摘要

We present relations leading to an efficient generalized population analysis in orbital spaces of usual delocalized molecular orbital wave functions. Besides the calculation of the diagonal elements of the reduced density matrices of any order, one can also calculate efficiently the probabilities (or, in general, the weights)of various occupation schemes of local electronic structures, by using generalized density operators referring to both electrons and electron holes. Within this population analysis, correlated molecular orbital wave functions can be used, and there are no restrictions to the number of the analyzed electrons and electron holes. It is based on the hole-expansion methodology, according to which a given electronic population is expanded in terms involving only electron holes, which as shown, can be calculated very efficiently; usual difficulties arising from the necessity to handle extremely large local determinantal basis sets are avoided, without introducing approximations. Although an emphasis is given for populations in the basis of orthogonal orbital spaces (providing probabilities), the case of nonorthogonal ones is also considered in order to show the connection of the generalized populations and the traditional weights obtained from valence-bond wave functions. Physically meaningful populations can be obtained by using natural orbitals, such as the natural atomic orbitals (NAOs) (orthogonal orbitals) or the pre-NAO’s (nonorthogonal orbitals); numerical applications for pyrrole molecule are presented in the basis of these natural orbitals.
机译:我们提出的关系导致在通常的离域分子轨道波函数的轨道空间中进行有效的广义总体分析。除了计算任何阶数的降密度矩阵的对角线元素外,还可以通过使用参考了两个电子的广义密度算子,有效地计算出局部电子结构的各种占据方案的概率(或者通常是权重)。和电子空穴。在该总体分析中,可以使用相关的分子轨道波函数,并且对所分析的电子和电子空穴的数量没有限制。它基于空穴扩展方法,根据该方法,给定的电子种群仅涉及电子空穴就可以扩展,如图所示,可以非常有效地计算出电子种群。避免了由于必须处理极大的局部行列式基集而引起的通常的困难,而无需引入近似值。尽管在正交轨道空间(提供概率)的基础上强调了总体,但也考虑了非正交空间的情况,以表明广义总体与从价键波函数获得的传统权重之间的联系。通过使用自然轨道,例如自然原子轨道(NAO)(正交轨道)或NAO之前的轨道(非正交轨道),可以获得具有物理意义的种群;在这些天然轨道的基础上介绍了吡咯分子的数值应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号