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A direct relativistic four-component multiconfiguration self-consistent-field method for molecules

机译:分子的直接相对论四组分多构型自洽场方法

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A new direct relativistic four-component Kramers-restricted multiconfiguration self-consistent-field (KR-MCSCF) code for molecules has been implemented. The program is based upon Kramers-paired spinors and a full implementation of the binary double groups (D-2h(*) and subgroups). The underlying quaternion algebra for one-electron operators was extended to treat two-electron integrals and density matrices in an efficient and nonredundant way. The iterative procedure is direct with respect to both configurational and spinor variational parameters; this permits the use of large configuration expansions and many basis functions. The relativistic minimum-maximum principle is implemented in a second-order restricted-step optimization algorithm, which provides sharp and well-controlled convergence. This paper focuses on the necessary modifications of nonrelativistic MCSCF methodology to obtain a fully variational KR-MCSCF implementation. The general implementation also allows for the use of molecular integrals from a two-component relativistic Hamiltonian as, for example, the Douglas-Kroll-Hess variants. Several sample applications concern the determination of spectroscopic properties of heavy-element atoms and molecules, demonstrating the influence of spin-orbit coupling in MCSCF approaches to such systems and showing the potential of the new method. (C) 2008 American Institute of Physics.
机译:已经实现了一种新的直接相对论的四组分Kramers限制的多构型自洽场(KR-MCSCF)代码。该程序基于Kramers对微调子和二进制双组(D-2h(*)和子组)的完整实现。用于单电子算子的基础四元数代数被扩展为以有效且非冗余的方式处理二电子积分和密度矩阵。迭代过程是直接针对构型参数和旋转变量参数的。这允许使用大型配置扩展和许多基本功能。相对论的最小-最大原理是在二阶受限步骤优化算法中实现的,该算法提供了清晰且受控良好的收敛性。本文重点讨论非相对论MCSCF方法的必要修改,以获取完全变体的KR-MCSCF实现。通用实现还允许使用来自两成分相对论哈密顿量的分子积分,例如,道格拉斯-克洛尔-赫斯变体。几个示例应用程序涉及确定重元素原子和分子的光谱性质,证明了自旋轨道耦合在MCSCF方法中对此类系统的影响,并显示了该新方法的潜力。 (C)2008美国物理研究所。

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