二聚体
从头算
量子化学
粘结长度
势能
成交(房地产)
从头算量子化学方法
化学
星团(航天器)
铬
量子化学
量子
耦合簇
计算化学
分子
原子物理学
物理
量子力学
有机化学
超分子化学
程序设计语言
法学
计算机科学
政治学
作者
Henrik R. Larsson,C. J. Umrigar,Garnet Kin‐Lic Chan
摘要
The complex electronic structure and unusual potential energy curve of the chromium dimer have fascinated scientists for decades, with agreement between theory and experiment so far elusive. Here, we present a new ab initio simulation of the potential energy curve and vibrational spectrum that significantly improves on all earlier estimates. Our data support a shift in earlier experimental assignments of a cluster of vibrational frequencies by one quantum number. The new vibrational assignment yields an experimentally derived potential energy curve in quantitative agreement with theory across all bond lengths and across all measured frequencies. By solving this long-standing problem, our results raise the possibility of quantitative quantum chemical modeling of transition metal clusters with spectroscopic accuracy.
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