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首页> 外文期刊>International Journal of Quantum Chemistry >Generalized Relativistic Effective Core Potential: Theoretical Grounds
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Generalized Relativistic Effective Core Potential: Theoretical Grounds

机译:广义相对论有效核心潜力:理论基础

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The generalized relativistic effective core potential (GRECP) method is analyzed from theoretical and computational points of view. The Hamiltonian in the frozen-core approximation is compared with the Hamiltonian containing the GRECP operator. It is demonstrated that the GRECP operator can be derived from rather natural physical grounds and the procedure of the GRECP generation can be justified theoretically. The accuracy of the RECP approximations in the simulation of the interactions and densities in the valence and outer-core regions is analyzed. The reliability of the simulation of the interaction with the inner-core electrons removed from the calculations with the GRECP is also studied. The importance of additional nonlocal terms both with the potentials for the outer-core pseudospinors and with the potentials depending on the occupation numbers of the outermost core shells in the expression for the GRECP operator is demonstrated in calculations on the Ag, Ba, Hg, Tl, and U atoms. The difference between the outer core and valence potentials was investigated. It is shown that in the valence region the tow-component pseudospinors coincide with the large components of four-component spinors in calculations for the same configuration states with a very high accuracy. Problems of Gaussian approximation caused by rather singular shapes of the potentials are considered. To attain a required high accuracy of approximation of the numerical potentials by Gaussians, serious additional efforts were undertaken.
机译:从理论和计算的角度分析了广义相对论有效核心潜力(GRECP)方法。将冻结核近似中的哈密顿量与包含GRECP算子的哈密顿量进行比较。证明了GRECP算子可以从相当自然的物理基础上得出,并且GRECP生成的过程在理论上是合理的。分析了价和外芯区相互作用和密度模拟中RECP近似值的准确性。还研究了与通过GRECP从计算中删除的内核电子相互作用的仿真的可靠性。在Ag,Ba,Hg,Tl的计算中证明了GRECP算子表达式中具有外核伪旋转子的电势和取决于最外层核壳的占据数的电势的其他非局部项的重要性和U原子。研究了外核和价电势之间的差异。结果表明,在化合价区域中,在以相同的配置状态进行计算时,两个成分的伪自旋子与四成分的自旋子的大成分非常吻合。考虑了由非常奇异的电位形状引起的高斯逼近问题。为了达到要求高斯近似数值势能的高精度,人们付出了额外的努力。

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