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Application of Wigner and Husimi intracule based electron correlation models to excited states

机译:基于Wigner和Husimi分子的电子相关模型在激发态中的应用。

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摘要

A new approach to the electron correlation problem based on phase space intracules derived from the Wigner distribution is applied to excited states.The computed electron correlation energy reduces the mean absolute error in the prediction of the excitation energies of 55 atomic excited states from 0.65 eV for unrestricted Hartree-Fock to 0.32 eV.This compares favorably to a mean absolute deviation of 0.52 eV for second order M0ller-Plesset perturbation theory and 0.35 eV for the Lee-Yang-Parr functional.An analogous correlation model based on the Husimi distribution is developed.Predicted correlation energies and excitation energies from this model are significantly worse than for the Wigner intracule based model.Alternative correlation kernels may be more suitable for the Husimi intracule based approach.
机译:将基于Wigner分布的相空间粒子的电子相关问题的新方法应用于激发态。计算出的电子相关能将55个原子激发态的激发能预测中的平均绝对误差从0.65 eV降低到无限制的Hartree-Fock限制为0.32 eV,这与二阶M0ller-Plesset微扰理论的平均绝对偏差为0.52 eV以及Lee-Yang-Parr泛函的平均绝对偏差为0.35 eV相比,建立了基于Husimi分布的类似相关模型与基于Wigner粒子的模型相比,该模型的预测相关能和激发能明显较差。替代相关核可能更适合基于Husimi粒子的方法。

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