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Exact decoupling of the Dirac Hamiltonian. IV. Automated evaluation of molecular properties within the Douglas-Kroll-Hess theory up to arbitrary order

机译:狄拉克哈密顿量的精确去耦。 IV。自动评估道格拉斯·克罗尔·海斯理论中的分子性质,直至任意阶

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In Part III [J. Chem. Phys. 124, 064102 (2005)] of this series of papers on exact decoupling of the Dirac Hamiltonian within transformation theory, we developed the most general account on how to treat magnetic and electric properties in a unitary transformation theory on the same footing. In this paper we present an implementation of a general algorithm for the calculation of magnetic as well as electric properties within the framework of Douglas-Kroll-Hess theory. The formal and practical principles of this algorithm are described. We present the first high-order Douglas-Kroll-Hess results for property operators. As for model properties we propose to use the well-defined radial moments, i.e., expectation values of r(k), which can be understood as terms of the Taylor-series expansion of any property operator. Such moments facilitate a rigorous comparison of methods free of uncertainties which may arise in a direct comparison with experiment. This is important in view of the fact that various approaches to two-component molecular properties may yield numerically very small terms whose approximate or inaccurate treatment would not be visible in a direct comparison to experimental data or to another approximate computational reference. Results are presented for various degrees of decoupling of the model properties within the Douglas-Kroll-Hess scheme.
机译:在第三部分[J.化学物理[124,064102(2005)]关于狄拉克哈密顿量在变换理论中的精确解耦的系列文章,我们在同等基础上的单一变换理论中开发了如何处理磁特性和电特性的最一般方法。在本文中,我们在道格拉斯·克罗尔·海斯(Douglas-Kroll-Hess)理论的框架内,提出了一种用于计算磁性能和电性能的通用算法的实现。描述了该算法的形式和实用原理。我们为物业经营者展示了第一个高阶Douglas-Kroll-Hess结果。对于模型属性,我们建议使用定义明确的径向矩,即r(k)的期望值,可以将其理解为任何属性算子的泰勒级数展开的术语。这样的时刻有助于对方法进行严格的比较,而没有与实验直接比较中可能出现的不确定性。考虑到以下事实,这一点很重要,因为对两种成分的分子特性的各种处理方法可能会产生非常小的数值项,在与实验数据或其他近似计算参考的直接比较中,其近似或不精确的处理将不可见。给出了在Douglas-Kroll-Hess方案中模型属性的各种解耦程度的结果。

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