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Three-dimensional ab initio dipole moment surfaces and stretching vibrational band intensities of the XH_3 molecules

机译:XH_3分子的三维从头算起偶极矩表面和拉伸振动带强度

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摘要

Stretching vibrational band intensities of XH_3 (X=N, Sb) molecules are investigated employing three-dimensional dipole moment surfaces combined with the local mode Hamiltonian model. The dipole moment surfaces of NH_3 and SbH_3 are calculated with the density functional theory and at the correlated MP2 level, respectively. The calculated band intensities are in good agreement with the available experimental data. The contribution to the band intensities from the different terms in the polynomial expansion of the dipole moments of four group Ⅴ hydrides (NH_3, PH_3, AsH_3 and SbH_3) are discussed. It is concluded that the breakdown of the bond dipole approximation must be considered. The intensity "borrowing" effect due to the wave function mixing among the stretching vibrational states is found to be less significant for the molecules that reach the local mode limit.
机译:XH_3(X = N,Sb)分子的拉伸振动带强度是利用三维偶极矩表面结合局部模式哈密顿量模型研究的。 NH_3和SbH_3的偶极矩表面分别根据密度泛函理论和相关MP2级别进行计算。计算的带强度与可用的实验数据非常吻合。讨论了四种Ⅴ族氢化物(NH_3,PH_3,AsH_3和SbH_3)的偶极矩多项式展开对不同强度带强度的贡献。结论是必须考虑键偶极子近似的击穿。发现在拉伸振动状态之间由于波函数混合而引起的强度“借入”效应对于达到局部模态极限的分子影响较小。

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