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Gauge-origin independent formalism of two-component relativistic framework based on unitary transformation in nuclear magnetic shielding constant

机译:基于核磁屏蔽恒定的酉变换的双组分相对论框架的衡量标志 - 原点独立形式

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This article proposes a gauge-origin independent formalism of the nuclear magnetic shielding constant in the two-component relativistic framework based on the unitary transformation. The proposed scheme introduces the gauge factor and the unitary transformation into the atomic orbitals. The two-component relativistic equation is formulated by block-diagonalizing the Dirac Hamiltonian together with gauge factors. This formulation is available for arbitrary relativistic unitary transformations. Then, the infinite-order Douglas-Kroll-Hess (IODKH) transformation is applied to the present formulation. Next, the analytical derivatives of the IODKH Hamiltonian for the evaluation of the nuclear magnetic shielding constant are derived. Results obtained from the numerical assessments demonstrate that the present formulation removes the gauge-origin dependence completely. Furthermore, the formulation with the IODKH transformation gives results that are close to those in four-component and other two-component relativistic schemes. Published by AIP Publishing.
机译:本文根据整体变换,提出了双组分相对论框架中核磁屏蔽恒定核磁屏蔽恒定的衡量标志的独立形式主义。该方案将量因子和单一转化介绍到原子轨道中。通过将Dirac Hamiltonian与仪表因子一起扩展到Dirac Hamiltonian,配制双组分相对论方程。该配方可用于任意相对论的单一变换。然后,将无限顺序的Douglas-Kroll-Hess(IoDKH)转化应用于本制定物。接下来,推导出Iodkh Hamiltonian的分析衍生物,用于评估核磁屏蔽常数。从数值评估获得的结果表明,本制定方法完全去除仪表原点依赖性。此外,具有IoDKH转化的制剂给出了靠近四组分和其他双组分相对论方案的结果。通过AIP发布发布。

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