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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Optimized solution procedure of the G-particle-hole hypervirial equation for multiplets: Application to doublet and triplet states
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Optimized solution procedure of the G-particle-hole hypervirial equation for multiplets: Application to doublet and triplet states

机译:多重峰的G粒子-孔超病毒方程的优化求解过程:应用于二重态和三重态

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摘要

Highly accurate descriptions of the correlated electronic structure of atoms and molecules in singlet states have recently been directly obtained within the framework of the G-particle-hole hypervirial (GHV) equation method, without any reference to the wave function [Int. J. Quantum Chem. 2009, 109, 3170; ibid. 2011, 111, 245]. Here, the GHV method is optimized and applied to the direct study of doublet and triplet atomic and molecular states. A new set of spin-representability conditions for triplet states has been derived and is also reported here. The results obtained with this optimized version of the GHV method are compared with those yielded by several standard wave function methods. This analysis shows that the GHV energies are more accurate than those obtained with a single-double excitation configuration interaction as well as with a coupled-cluster singles and doubles treatment. Moreover, the resulting 2-body matrices closely satisfy a set of stringent N- and spin-representability conditions.
机译:最近,在G粒子-空穴-超病毒(GHV)方程方法的框架内直接获得了原子态单分子态的原子和分子的相关电子结构的高精度描述,而没有涉及波函数[Int。 J.量子化学。 2009,109,3170;同上2011,111,245]。在这里,GHV方法被优化,并应用于直接和双重和三重态原子和分子态的研究。已经导出了一组用于三重态的自旋可表示性条件,并在此进行了报道。将这种优化版本的GHV方法获得的结果与几种标准波动函数方法产生的结果进行比较。该分析表明,GHV能量比通过单双激发配置相互作用以及耦合簇单双处理获得的能量更准确。此外,所得的2体矩阵非常满足一组严格的N和自旋可表示性条件。

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