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An ab initio procedure for deriving atomic polarizability tensors in molecules

机译:从头计算程序得出分子中的原子极化率张量

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A new method for deriving anisotropic atomic dipole polarizability tensors for predicting molecular polarizabilities is presented. The procedure uses the relationships between atomic and molecular multipoles to rigorously derive the atomic polarizability tensors from quantum mechanically computed molecular dipole-quadrupole polarizabilities and their derivatives with respect to molecular deformations. The resulting atomic polarizabilities have been tested for the water molecule at several ab initio levels of approximation by comparing the summed atomic polarizabilities with the conventional ab initio molecular results and with experiment. Good agreement was found between molecular polarizabilities found using the two methods. The model is also shown to give interaction energies between a water molecule and a point charge that accurately reproduce ab initio results. A similar comparison of the atomic polarizability tensors is shown for the N-methylacetamide molecule. For most atom types, the atomic polarizability tensors.
机译:提出了一种新的推导各向异性原子偶极子极化率张量以预测分子极化率的新方法。该程序利用原子和分子多极之间的关系从量子力学计算的分子偶极-四极极化率及其关于分子变形的导数严格推导原子极化率张量。通过将求和的原子极化率与常规的从头算分子结果进行比较,并通过实验,对水分子在几个从头算的近似水平下所得的原子极化率进行了测试。在使用这两种方法发现的分子极化率之间发现了很好的一致性。该模型还显示出在水分子和点电荷之间的相互作用能,该能量准确地再现了从头开始的结果。对于N-甲基乙酰胺分子,显示出原子极化率张量的类似比较。对于大多数原子类型,原子极化率张量。

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