首页> 外文期刊>The Journal of Chemical Physics >Coupled-cluster based basis sets for valence correlation calculations. New primitives, frozen atomic natural orbitals, and basis sets from double to hextuple zeta for atoms H, He, and B-Ne
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Coupled-cluster based basis sets for valence correlation calculations. New primitives, frozen atomic natural orbitals, and basis sets from double to hextuple zeta for atoms H, He, and B-Ne

机译:基于耦合的基于群集的基础组,用于价相关计算。 新的基因,冷冻原子自然轨道,以及从双倍到Hextuple Zeta的基础组,他和B-ne

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Aseries of newbasis sets generated from coupled-cluster theory are presented. Sets of primitive Gaussians for angular momentum shells containing occupied orbitals are optimized and extended until the Hartree-Fock energy improvement per electron falls below 10 mu H. This same energy threshold is applied to the energy from the coupled-cluster singles, doubles, and perturbative triples (CCSD(T)) approximation and taken as a guide to the generation of sets of polarization functions, constructed at the level of second-order many-body perturbation theory, once it is shown that practically indistinguishable results are obtained if the more costly CCSD(T) approach is used. A variant of the usual atomic natural orbitals (ANOs) grounded on the frozen natural orbital idea is explored, leading to the frozen ANO (FANO) contraction scheme, whose truncation pattern and convergence capabilities are thoroughly tested. Due to its superior description of the single determinant solution, the FANOs are proposed as the recommended contraction approach. FANO basis sets of sizes ranging from double to hextuple zeta are provided for atoms H through Ne and examined in atomic and molecular calculations. Published by AIP Publishing.
机译:提出了从耦合群集理论生成的newBasis集的ASEREIES。针对占用轨道的角动量壳的原始高斯套进行优化并延伸,直到每个电子的Hartree-Fock能量改善低于10μmH。将该相同的能量阈值应用于来自偶联的簇单打,双打和扰动的能量。三元组(CCSD(T))近似并作为生成偏振函数集的指南,在二阶许多身体扰动理论的水平上构造,一旦显示出在更昂贵的情况下获得实际上无法区分的结果使用CCSD(T)方法。探讨了常规原子天然轨道(ANOS)的常规原子自然轨道(ANOS),导致冷冻Ano(Fano)收缩方案,其截断模式和收敛能力彻底测试。由于其优越地描述了单个确定溶液,因此提出了扇形作为推荐的收缩方法。 Fano基团的范围从双倍到Hextuple Zeta提供用于原子H通过NE提供并以原子和分子计算检查。通过AIP发布发布。

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