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首页> 外文期刊>Journal of physical chemistry letters >Diagonal Born-Oppenheimer Corrections within the Nuclear-Electronic Orbital Framework
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Diagonal Born-Oppenheimer Corrections within the Nuclear-Electronic Orbital Framework

机译:核电轨道框架内对角线出生的oppenheimer校正

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The nuclear-electronic orbital (NEO) method treats specified nuclei, typically protons, quantum mechanically on the same level as the electrons. This approach invokes the Born-Oppenheimer separation between the quantum and classical nuclei, as well as the conventional separation between the electrons and classical nuclei. To test the validity of this additional adiabatic approximation, herein the diagonal Born-Oppenheimer correction (DBOC) within the NEO framework is derived, analyzed, and calculated numerically for a set of eight molecules. Inclusion of the NEO DBOC is found to change the equilibrium bond lengths by only similar to 10(-4) angstrom and the heavy atom vibrational stretching frequencies by similar to 1-2 cm(-1) per quantum proton bonded to an atom participating in the vibrational mode. These results imply that the DBOC does not significantly impact molecular properties computed with the NEO approach, although it can be included when necessary. Understanding the physical characteristics and quantitative contributions of the DBOC has broad implications for applications of multicomponent density functional theory and wave function methods.
机译:核电轨道(NEO)方法将指定的核,通常是质子,量子的机械地处理在与电子的相同水平上。这种方法调用量子和经典核之间的出生对立海默分离,以及电子和典型核之间的常规分离。为了测试这种额外的绝热近似的有效性,这里的Neo框架内的对角出生的对比海默校正(DBOC)被衍生,分析,并对一组八个分子进行数量计算。发现包含Neo DBOC,通过仅相似于10(4)埃和重度原子振动拉伸频率,通过与参与原子的原子相似的1-2cm(-1),改变平衡键长度和重型原子振动拉伸频率振动模式。这些结果意味着DBOC不会显着影响用Neo方法计算的分子特性,尽管它可以在必要时包括。了解DBOC的物理特征和定量贡献对多组分密度泛函理论和波函数方法的应用具有广泛的影响。

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