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首页> 外文期刊>The Journal of Chemical Physics >Orbital spaces in the divide-expand-consolidate coupled cluster method
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Orbital spaces in the divide-expand-consolidate coupled cluster method

机译:扩展-合并耦合簇方法中的轨道空间

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摘要

The theoretical foundation for solving coupled cluster singles and doubles (CCSD) amplitude equations to a desired precision in terms of independent fragment calculations using restricted local orbital spaces is reinvestigated with focus on the individual error sources. Four different error sources are identified theoretically and numerically and it is demonstrated that, for practical purposes, local orbital spaces for CCSD calculations can be identified from calculations at the MP2 level. The development establishes a solid theoretical foundation for local CCSD calculations for the independent fragments, and thus for divide-expand-consolidate coupled cluster calculations for large molecular systems with rigorous error control. Based on this theoretical foundation, we have developed an algorithm for determining the orbital spaces needed for obtaining the single fragment energies to a requested precision and numerically demonstrated the robustness and precision of this algorithm. Published by AIP Publishing.
机译:重新研究了使用受限局部轨道空间在独立片段计算方面将耦合的群集单双精度(CCSD)振幅方程求解到所需精度的理论基础,重点是单个误差源。从理论上和数值上确定了四个不同的误差源,并且表明,出于实际目的,可以从MP2级别的计算中确定CCSD计算的局部轨道空间。该开发为独立片段的局部CCSD计算,从而为具有严格误差控制的大分子系统的分-扩-固耦合偶合簇计算奠定了坚实的理论基础。在此理论基础上,我们开发了一种算法,用于确定获得单个碎片能量所需的轨道空间,以达到所需的精度,并通过数值方法证明了该算法的鲁棒性和精度。由AIP Publishing发布。

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