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An interpretation of the absorption and emission spectra of the gold dimer using modern theoretical tools.

机译:使用现代理论工具解释金二聚体的吸收和发射光谱。

摘要

The excited states of the gold dimer have been investigated using modern theoretical tools including the multiconfigurational exact molecular mean-field intermediate Hamiltonian Fock-space Coupled Cluster, X2Cmmf-IHFSCC, and the complete active space self-consistent field followed by second order perturbation theory, CASSCF/CASPT2. The computed optically active transitions have been benchmarked against the available experimental data and compared with time-dependent density functional theory, TDDFT, results, both in the two- and four-component schemes. We explored in great detail several spectroscopic properties such as bond lengths, potential energy surfaces (PES), vibrational frequencies and vibrational progressions of the ground and low-lying excited states. Our data show excellent agreement with the experimental measurements and present a significant improvement compared to previous ab initio calculations. They also permit a detailed investigation of the intriguing a ← X and A' ← X experimental bands that, according to our calculations, show an avoided energy level crossing. The location of this crossing is critical for a correct estimation of the vibrational progression and oscillator strengths of these two states. Moreover, among the exchange-correlation (xc) potentials, the SAOP gives the best excitation energies, followed by the hybrid B3LYP functional. Pure functionals like BLYP give by far the worst results.
机译:已使用现代理论工具研究了金二聚体的激发态,其中包括多构型精确分子均场中间哈密顿Fock-Space耦合簇X2Cmmf-IHFSCC,以及完整的有源空间自洽场,其后是二阶摄动理论, CASSCF / CASPT2。计算出的光学活性跃迁已针对现有的实验数据进行了基准测试,并与基于时间的密度泛函理论TDDFT的结果进行了比较(在两个和四个组件方案中)。我们详细探讨了几种光谱性质,例如键长,势能表面(PES),振动频率以及基态和低激发态的振动级数。我们的数据显示出与实验测量结果极佳的一致性,并且与以前的从头算计算相比,具有明显的改进。他们还允许对有趣的←X和A'←X实验带进行详细研究,根据我们的计算,它们显示出避免了能级交叉。该交叉点的位置对于正确估计这两种状态的振动进程和振荡器强度至关重要。此外,在交换相关(xc)势中,SAOP给出了最佳的激发能,其次是混合B3LYP功能。到目前为止,纯功能(如BLYP)给出的效果最差。

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