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New compact density matrix averaged ANO basis sets for relativistic calculations

机译:新的紧凑密度矩阵对相对论计算的基准组平均值

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When including relativistic effects in quantum chemical calculations, basis sets optimized for relativistic Hamiltonians such as the atomic natural orbital-relativistic core-correlated (ANO-RCC) basis set have to be used to avoid large errors that appear upon contraction of the basis set. While the large size of the ANO-RCC basis set in terms of primitive basis functions allows for highly accurate calculations, it also hinders its applicability to large sized systems due to the computational costs. To tackle this problem, a new compact relativistic ANO basis set, the ANO-eXtra Small (XS) basis set, is introduced for elements H-Ca. The number of primitive basis functions in ANO-XS is about half that of the ANO-RCC basis set. This greatly reduces the computational costs in the integral calculations especially when used in combination with Cholesky decomposition. At the same time, the ANO-XS basis set is able to predict molecular properties such as bond lengths and excitation energies with reasonable errors compared to the larger ANO-RCC basis set. The main intention for the ANO-XS basis set is to be used in conjunction with the ANO-RCC basis set for large systems that can be divided with regions demanding different qualities of basis sets. This is exemplified in CASPT2 calculations for an Ir(C3H4N)(3) complex, where substituting the larger ANO-RCC for the compact ANO-XS basis set at the ligand atoms yields only minor differences for a large number of excited states compared to calculations employing the ANO-RCC basis set on all atoms. Thus, accurate calculations including relativistic effects for large systems become more affordable with the new ANO-XS basis set. Published by AIP Publishing.
机译:当包括在量子化学计算中的相对论效应时,对于相对论的Hamiltonians,例如原子自然轨道相对论核心相关性(Ano-RCC)基础集的基础集合用于避免基础集收缩时出现的大误差。虽然在原始基础函数方面,大尺寸的Ano-RCC基础设定允许高度准确的计算,但由于计算成本,它还阻碍了其对大型系统的适用性。为了解决这个问题,为元素H-CA引入了一种新的紧凑型相对论Ano基础集,即额外的小(XS)基础集。 ANO-XS中的原始基本函数的数量大约是Ano-RCC基集的一半。这大大降低了整体计算中的计算成本,尤其是与Cholesky分解结合使用时。同时,与较大的ANO-RCC基集相比,ANO-XS基础集能够预测具有合理误差的分子特性,例如粘合长度和激发能量。 ANO-XS基础集的主要目的是与ANO-RCC基础设置用于大型系统,该大系统可以划分为要求基础集的不同质量的区域。这在Caspt2计算中举例说明的IR(C3H4N)(3)复合物,其中代替较大的ANO-RCC在配体原子处设定的紧凑型AnO-Xs基础设定,与计算相比,大量激发态的仅产生微小差异在所有原子上采用Ano-RCC基础。因此,具有对大型系统的相对论效果的准确计算与新的ANO-XS基础集更有实惠。通过AIP发布发布。

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