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Accurate intermolecular ground state potential of the Ne-N_2 van der Waals complex

机译:Ne-N_2 van der Waals配合物的精确分子间基态势

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Ab initio ground state potential energy surfaces are obtained from interaction energies calculated with the coupled cluster singles and doubles model including connected triples corrections [CCSD(T)] and the aug-cc-pVXZ (X=5,Q,T,D) basis sets augmented with two different sets of midbond functions (denoted 33221 and 33211).The aug-cc-pV5Z-33221 surface is characterized by a T-shaped 49.5 cm~(-1) minimum at R_e=3.38A and a linear saddle point at 3.95 A with D_e=36.6 cm~(-1).These results agree well with the values provided by the accurate semiempirical potentials available.The rovibronic spectroscopic properties are determined and compared to the available experimental data and previous theoretical results.We study the basis set convergence of the intermolecular potentials and the rotational frequencies.The aug-cc-pVTZ basis sets provide reasonable binding parameters,but seem not to be converged enough for the evaluation of the microwave spectra.The aug-cc-pVQZ basis sets considerably improve the triple zeta results.The differences between the results obtained with the aug-cc-pVTZ-33221 basis set surface and those with the aug-cc-pVQZ-33221 are smaller than those of the corresponding bases with the set of 33211 midbond functions.The aug-cc-pVQZ surfaces are close to the aug-cc-pV5Z,that are expected to be close to convergence.With our best surfaces the errors in the frequencies with respect to the accurate experimental results go down to 0.6%.
机译:从头计算基态势能面是从用耦合的簇单双模型计算的相互作用能获得的,该模型包括连接的三重校正[CCSD(T)]和ug-cc-pVXZ(X = 5,Q,T,D)用两个不同的中键函数集(分别为33221和33211)增强的集合。aug-cc-pV5Z-33221表面的特征是T形最小为49.5 cm〜(-1),R_e = 3.38A和线性鞍点在3.95 A时D_e = 36.6 cm〜(-1),这些结果与精确的半经验电势提供的值非常吻合。确定了电子波谱的性质,并将其与可用的实验数据和先前的理论结果进行了比较。分子间电势和旋转频率的基集收敛。aug-cc-pVTZ基集提供了合理的结合参数,但似乎没有收敛到足以评估微波光谱。证明三重zeta结果。aug-cc-pVTZ-33221基集表面与aug-cc-pVQZ-33221基集表面获得的结果之间的差异小于具有33211中键功能集的相应基团的结果之间的差异。aug-cc-pVQZ表面接近aug-cc-pV5Z,预计接近收敛。使用我们的最佳表面,相对于准确的实验结果,频率误差降低到0.6%。

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