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Structural and electronic properties of gold microclusters: assessment of the localized Hartree-Fock method

机译:金微团簇的结构和电子性质:评估局部Hartree-Fock方法

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We assess the localized Hartree-Fock (LHF) method for the simulation of the structural and electronic propcrlics of gold microclusters. We compute the minimum-energy geometries, atomization energies, dipole moments, and single-particle spectra for five gold clusters, Au_N, and their anions, Au_N~-, with N ≤ 4. Calculations are performed with the LHF functional, with and without the addition of the Lee-Yang -Parr (LYP) correlation, and the results are compared with those obtained from other scmilocal and hybrid functionals as well as from Hartree-Fock calculations. The LHF functional yields structural properties of similar quality to the other exchange-only methods, but superior molecular orbital energies are found. The LHF single-particle spectrum is free of the artifacts typical for HF and standard DFT calculations and in good agreement with available experimental reference data. The inclusion of correlation by the LYP functional produces a significant improvement of geometries and energetics, but has only a minor impact on the orbital energies.
机译:我们评估了本地化的Hartree-Fock(LHF)方法,用于模拟金微团簇的结构和电子性质。我们计算了N≤4的五个金簇Au_N及其阴离子Au_N〜-的最小能量几何形状,雾化能量,偶极矩和单粒子光谱,计算使用LHF功能进行,有无添加Lee-Yang -Parr(LYP)相关性,并将结果与​​从其他scmilocal和混合函数以及Hartree-Fock计算中获得的结果进行比较。 LHF功能可产生与其他仅交换方法相似质量的结构性质,但发现具有优越的分子轨道能。 LHF单粒子光谱不含用于HF和标准DFT计算的典型伪像,并且与可用的实验参考数据非常吻合。 LYP函数将相关性包括在内可以显着改善几何形状和高能学,但对轨道能量的影响很小。

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