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Nonconventional partitioning of the many-body Hamiltonian for studying correlation effects

机译:用于研究关联效应的多体哈密顿量的非常规划分

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For the treatment of electron correlation, one most often uses the Moller-Plesset (MP) partition which defines the zero-order Hamiltonian through the spectral resolution of the Fockian. We investigate how the MP partitioning can be improved while still using the Hartree-Fock (HF) reference state; and how the HF wave function can be substituted by a correlated one preserving the formal simplicity of the HF-based approach. To improve the MPn result,we introduce a fine tuning of energy denominators replacing the HF orbital energies with the ionization potentials obtained from the second-order Dyson equation. As this equation usually tends to close the gaps, a slight decrease of the denominators is expected, inducing an improvement of low-order correlation energies. We keep the simplicity of the MP partitioning and handle Dyson corrections as simple level shifts. Substituting doubly filled HF orbitals by strongly orthogonal geminals, one introduces a correlated reference state which is variational, size-consistent, and properly describes single-bond dissociation, This wave function, the antisymmetrized product of strongly orthogonal geminals (APSG), offers a good starting point for further corrections. We show that the use of an APSG reference state in the equation-of-motion technique leads to Tamm-Dankoff approach (TDA) equations which account for correlation effects in electronic excitation energies, (C) 1998 John Wiley & Sons, Inc. [References: 63]
机译:对于电子相关性的处理,最常用的是Moller-Plesset(MP)分区,该分区通过Fockian的光谱分辨率定义零级哈密顿量。我们研究如何在仍使用Hartree-Fock(HF)参考状态的情况下改善MP分区;以及如何用相关的函数代替HF波函数,从而保持基于HF的方法的形式简单性。为了改善MPn的结果,我们引入了一个能量分母的微调,该能量分母用从二阶Dyson方程获得的电离势代替了HF轨道能量。由于该方程通常趋于缩小间隙,因此预期分母会略有下降,从而导致低阶相关能的提高。我们保留了MP分区的简单性,并通过简单的电平移动来处理戴森校正。用强正交双子星替换双填充的HF轨道,可以引入一个相关的参考状态,该参考态是变化的,大小一致的,并且恰当地描述了单键解离。该波函数是强正交双子星(APSG)的反对称产物,提供了一个很好的选择。进一步修正的起点。我们证明,在运动方程技术中使用APSG参考状态会导致Tamm-Dankoff方法(TDA)方程,该方程解释了电子激发能中的相关效应,(C)1998 John Wiley&Sons,Inc. [参考:63]

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