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首页> 外文期刊>The Journal of Chemical Physics >Electronic correlation without double counting via a combination of spin projected Hartree-Fock and density functional theories
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Electronic correlation without double counting via a combination of spin projected Hartree-Fock and density functional theories

机译:通过自旋投影Hartree-Fock和密度泛函理论的组合进行无重复计数的电子相关

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摘要

Several schemes to avoid the double counting of correlations in methods that merge multireference wavefunctions with density functional theory (DFT) are studied and here adapted to a combination of spin-projected Hartree-Fock (SUHF) and DFT. The advantages and limitations of the new method, denoted SUHF+f_cDFT, are explored through calculations on benchmark sets in which the accounting of correlations is challenging for pure SUHF or DFT. It is shown that SUHF+f_cDFT can greatly improve the description of certain molecular properties (e.g., singlet-triplet energy gaps) which are not improved by simple addition of DFT dynamical correlation to SUHF. However, SUHF+f_cDFT is also shown to have difficulties dissociating certain types of bonds and describing highly charged ions with static correlation. Possible improvements to the current SUHF+f_cDFT scheme are discussed in light of these results.
机译:研究了在将多参考波函数与密度泛函理论(DFT)合并的方法中避免重复计算相关性的几种方案,并在此使其适用于自旋投影Hartree-Fock(SUHF)和DFT的组合。通过对基准集进行计算,探索了被称为SUHF + f_cDFT的新方法的优点和局限性,其中对于纯SUHF或DFT,相关性的计算具有挑战性。结果表明,SUHF + f_cDFT可以大大改善某些分子特性(例如,单重态-三重态能隙)的描述,而简单地将DFT动力学相关性添加到SUHF并不能改善这些特性。但是,SUHF + f_cDFT还显示出难以解离某些类型的键并难以描述具有静态相关性的高电荷离子。鉴于这些结果,讨论了对当前SUHF + f_cDFT方案的可能改进。

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