Institut für Chemie, Technische Universität Berlin, Theoretische Chemie, Sekr. C7, Straße des 17. Juni 135, D-10623 Berlin, Germany.
J Chem Phys. 2012 Jan 7;136(1):014111. doi: 10.1063/1.3672080.
Local hybrid functionals with their position-dependent exact-exchange admixture are a conceptually simple and promising extension of the concept of a hybrid functional. Local hybrids based on a simple mixing of the local spin density approximation (LSDA) with exact exchange have been shown to be successful for thermochemistry, reaction barriers, and a range of other properties. So far, the combination of this generation of local hybrids with an LSDA correlation functional has been found to give the most favorable results for atomization energies, for a range of local mixing functions (LMFs) governing the exact-exchange admixture. Here, we show that the choice of correlation functional to be used with local hybrid exchange crucially influences the parameterization also of the exchange part as well as the overall performance. A novel ansatz for the correlation part of local hybrids is suggested based on (i) range-separation of LSDA correlation into short-range (SR) and long-range (LR) parts, and (ii) partial or full elimination of the one-electron self-correlation from the SR part. It is shown that such modified correlation functionals allow overall larger exact exchange admixture in thermochemically competitive local hybrids than before. This results in improvements for reaction barriers and for other properties crucially influenced by self-interaction errors, as demonstrated by a number of examples. Based on the range-separation approach, a fresh view on the breakdown of the correlation energy into dynamical and non-dynamical parts is suggested.
基于位置相关的局域混合泛函与精确交换混合的局域混合泛函是混合泛函概念的一种具有概念简单和应用前景广阔的扩展。基于局域自旋密度近似(LSDA)与精确交换简单混合的局域混合泛函在热化学、反应势垒和一系列其他性质方面已被证明是成功的。到目前为止,发现这一代局域混合泛函与 LSDA 相关泛函的结合对于原子化能给出了最有利的结果,对于控制精确交换混合的一系列局域混合函数(LMF)也是如此。在这里,我们表明,与局域混合交换一起使用的相关泛函的选择对交换部分的参数化以及整体性能也有至关重要的影响。我们基于(i)LSDA 相关的范围分离为短程(SR)和长程(LR)部分,和(ii)从 SR 部分部分或完全消除单电子自相关,提出了一种局域混合相关部分的新方案。结果表明,与以前相比,这种改进的相关泛函允许在热化学竞争局域混合中加入更大的精确交换混合。这导致了反应势垒和其他受自相互作用误差关键影响的性质的改进,这通过许多例子得到了证明。基于范围分离方法,我们对相关能量分解为动力学和非动力学部分的新观点进行了建议。