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首页> 外文期刊>The Journal of Chemical Physics >Determination of spin Hamiltonians from projected single reference configuration interaction calculations. I. Spin 1/2 systems
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Determination of spin Hamiltonians from projected single reference configuration interaction calculations. I. Spin 1/2 systems

机译:从预计的单个参考构型相互作用计算确定自旋哈密顿量。 I.旋转1/2系统

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The most reliable wave-function based treatments of magnetic systems usually start from a complete active space self-consistent field calculation of the magnetic electrons in the magnetic orbitals, followed by extensive and expensive configuration interaction (CI) calculations. This second step, which introduces crucial spin polarization and dynamic correlation effects, is necessary to reach reliable values of the magnetic coupling constants. The computational cost of these approaches increases exponentially with the number of unpaired electrons. The single-determinantal unrestricted density functional Kohn-Sham calculations are computationally much simpler, and may provide reasonable estimates of these quantities, but their results are strongly dependent on the chosen exchange-correlation potential. The present work, which may be seen as an ab initio transcription of the unrestricted density functional theory technique, returns to the perturbative definition of the Heisenberg Hamiltonian as an effective Hamiltonian, and proposes a direct estimate of its diagonal energies through single reference CI calculations. The differences between these diagonal terms actually determine the entire Heisenberg Hamiltonian. The reference determinants must be vectors of the model space and the components on the other vectors of the model space are cancelled along the iterative process. The method is successfully tested on a series of bicentric and multicentric spin 1 2 systems. The projected single reference difference dedicated CI treatment is both accurate and of moderate cost. It opens the way to parameter-free calculations of large spin assemblies.
机译:磁系统最可靠的基于波函数的处理方法通常始于对磁轨道中磁电子进行完整的有源空间自洽场计算,然后进行大量昂贵的组态相互作用(CI)计算。这第二个步骤引入了关键的自旋极化和动态相关效应,对于达到磁耦合常数的可靠值是必需的。这些方法的计算成本随着不成对电子的数量成倍增加。单确定性无限制密度泛函Kohn-Sham计算在计算上更加简单,并且可以提供这些数量的合理估计,但其结果在很大程度上取决于所选的交换相关势。本工作可以看作是不受限制的密度泛函理论技术的从头算起的转录,它返回到海森堡哈密顿量的扰动定义为有效哈密顿量,并提出了通过单参考CI计算对其对角线能量的直接估计。这些对角项之间的差异实际上决定了整个海森堡哈密顿量。参考行列式必须是模型空间的向量,并且模型空间其他向量上的分量会在迭代过程中被抵消。该方法已在一系列双中心和多中心自旋1 2系统上成功测试。预计的单一参考差异专用CI治疗既准确又成本适中。它为大型自旋装配的无参数计算开辟了道路。

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