首页> 外文期刊>The Journal of Chemical Physics >Making four- and two-component relativistic density functional methods fully equivalent based on the idea of 'from atoms to molecule'
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Making four- and two-component relativistic density functional methods fully equivalent based on the idea of 'from atoms to molecule'

机译:基于“从原子到分子”的思想,使四分量和二分量相对论密度泛函方法完全等效

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It is shown that four- and two-component relativistic Kohn-Sham methods of density functional theory can be made fully equivalent in all the aspects of simplicity, accuracy, and efficiency. In particular, this has been achieved based solely on physical arguments rather than on mathematical tricks. The central idea can be visualized as "from atoms to molecule," reflecting that the atomic information is employed to "synthesize" the molecular no-pair relativistic Hamiltonian. That is, the molecular relativistic Hamiltonian can, without loss of accuracy, be projected onto the positive energy states of the isolated Dirac atoms with the projector approximated simply by the superposition of the atomic ones. The dimension of the four-component Hamiltonian matrix then becomes the same as that of a two-component one. Another essential ingredient is to formulate quasirelativistic theory on matrix form rather than on operator form. The resultant quasi-four-component, normalized elimination of the small component, and symmetrized elimination of the small component approaches are critically examined by taking the molecules of MH and M-2 (M=At, E117) as examples.
机译:结果表明,密度泛函理论的四分量和二分量相对论Kohn-Sham方法在简单性,准确性和效率的所有方面都可以完全等同。特别地,这仅基于物理论证而不是基于数学技巧来实现。中心思想可以形象化为“从原子到分子”,反映出原子信息被用来“合成”分子无对相对论哈密顿量。也就是说,分子相对论性的哈密顿量可以在不降低精度的情况下,通过简单地由原子原子的叠加近似的投影仪投影到孤立的狄拉克原子的正能量状态上。然后,四分量哈密顿矩阵的维数与两分量哈密顿矩阵的维数相同。另一个基本要素是用矩阵形式而不是算子形式来拟准论。通过以MH和M-2(M = At,E117)分子为例,严格检查了所得的准四组分,小组分的归一化消除和小组分的对称消除。

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