首页> 外文期刊>The Journal of Chemical Physics >Relativistic density functional calculations using two-spinor minimax finite-element method and linear combination of atomic orbitals for ZnO, CdO, HgO, UubO and Cu-2, Ag-2, Au-2, Rg(2)
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Relativistic density functional calculations using two-spinor minimax finite-element method and linear combination of atomic orbitals for ZnO, CdO, HgO, UubO and Cu-2, Ag-2, Au-2, Rg(2)

机译:ZnO,CdO,HgO,UubO和Cu-2,Ag-2,Au-2,Rg(2)的相对论密度泛函计算,使用两旋极极小极大值有限元方法和原子轨道的线性组合

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In previous work the authors have presented a highly accurate two-spinor fully relativistic solution of the two-center Coulomb problem utilizing the finite-element method (FEM) and furthermore developed a relativistic minimax two-spinor linear combination of atomic orbitals (LCAO). In the present paper the authors present Dirac-Fock-Slater (DFS-) density functional calculations for two-atomic molecules up to super heavy systems using the fully nonlinear minimax FEM and the minimax LCAO in its linearized approximation (linear approximation to relativistic minimax). The FEM gives highly accurate benchmark results for the DFS functional. Especially considering molecules with up to super heavy atoms such as UubO and Rg(2), the authors found that LCAO fails to give the correct systematic trends. The accurate FEM results shed a new light on the quality of the DFS-density functional. (c) 2006 American Institute of Physics.
机译:在先前的工作中,作者使用有限元方法(FEM)提出了双中心库仑问题的高精度两轴全相对论解,并进一步开发了相对论的极小极大二原子线性轨道的线性组合(LCAO)。在本文中,作者使用线性完全逼近(线性近似到相对论最小极大值)方法,使用完全非线性极小极大值有限元法和极小极大值LCAO提出了至超重系统的两个原子分子的狄拉克-福克-斯莱特(DFS-)密度泛函计算。 。 FEM为DFS功能提供了高度准确的基准测试结果。特别是考虑到具有超重原子的分子,例如UubO和Rg(2),作者发现LCAO无法给出正确的系统趋势。精确的FEM结果为DFS密度功能的质量提供了新的思路。 (c)2006年美国物理研究所。

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