...
首页> 外文期刊>The Journal of Chemical Physics >Low-order scaling local electron correlation methods.III.Linear scaling local pertubative triples correction(T)
【24h】

Low-order scaling local electron correlation methods.III.Linear scaling local pertubative triples correction(T)

机译:低阶标度局部电子相关方法III。线性标度局部渗透性三重校正(T)

获取原文
获取原文并翻译 | 示例
           

摘要

A new method for the perturbative calculation of the correlation energy due to connected triple excitations (7) in the framework of local coupled cluster theory is presented, for which all computational resources scale linearly with molecular ~ize. One notable complication in the formalism for connected triples introduced by the local approach Is the nondiagonality of the Pock matrix in the localized MO (LMO) and projected AO (PAO) basis, which leads to couplings between individual triples amplitudes via the internal-internal and external-external blocks of the Fock matrix, respectively. Further complications and couplings arise due to the nonorthogonality of the P AOs. While the couplings via the external~external block can easily be dealt with, this is more difficult for the internal-internal couplings. In a previous paper we already published preliminary results of an approximation of the method, which neglects these internal-internal couplings entirely and recovers about 97% of the total local triples correlation energy. In the present work we implemented the' 'full' , local (7) method, which involves the iterative solution ofa system of linear equations for the triples amplitudes to take the internal-internal couplings fully into account. Moreover, a further variant of the method was implemented, which approximates the internal- internal couplings at the level of first-order perturbation theory with respect to the off-diagonal elements of the Fock matrix in LMO basis, thus avoiding the need for an iterative solution of the triples equations and storage of the triples amplitudes. The latter variant reliably recovers more than 99% of the fuU local triples energy. Test calculations with more than 1000 basis functions and over 300 correlated electrons are presented, showing a speedup of about 106 relative to the estimated time of a corresponding conventional (1) calculation.
机译:提出了一种在局部耦合簇理论的框架下微扰计算关联三重激发相关能量的新方法(7),该方法的所有计算资源均随分子化线性增长。局部方法引入的三联体形式主义的一个显着复杂性是局部MO(LMO)和投影AO(PAO)基础上的Pock矩阵的非对角性,这导致各个三联体振幅之间通过内部-内部和内部耦合。 Fock矩阵的外部-外部块。由于P AO的非正交性,还会导致进一步的复杂性和耦合。尽管可以轻松地处理通过外部/外部块进行的耦合,但对于内部-内部耦合而言,则更加困难。在先前的论文中,我们已经发布了该方法的近似方法的初步结果,该方法完全忽略了这些内部-内部的耦合,并且回收了总局部三元组相关能量的约97%。在当前的工作中,我们实现了“全”局部(7)方法,该方法涉及针对三重振幅的线性方程组的迭代解,以充分考虑内部-内部耦合。此外,还实施了该方法的另一种形式,该形式在LMO基础上相对于Fock矩阵的非对角元素,在一阶微扰理论的水平上近似了内部-内部耦合,从而避免了迭代的需要。三元组方程的解和三元组振幅的存储。后一种变型可靠地回收了fuU本地三倍能量的99%以上。提出了具有1000多个基函数和300多个相关电子的测试计算,相对于相应常规(1)计算的估计时间,显示出约106的加速。

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