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Application of multireference linearized coupled-cluster theory to atomic and molecular systems

机译:多引用线性化耦合簇理论在原子和分子系统中的应用

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Applications of the multireference linearized coupled-cluster single-doubles (MRLCCSD) to atomic and molecular systems have been carried out. MRLCCSD is exploited to calculate the ground-state energies of HF, H2O, NH3, CH4, N-2, BF, and C-2 with basis sets, cc-pVDZ, cc-pVTZ and cc-pVQZ. The equilibrium bond lengths and vibration frequencies of HF, HCl, Li-2, LiH, LiF, LiBr, BH, and AlF are computed with MRLCCSD and compared with the experimental data. The electron affinities of F and CH as well as the proton affinities of H2O and NH3 are also calculated with MRLCCSD. These results are compared with the results produced with second-order perturbation theory, linearized coupled-cluster doubles (LCCD), coupled-cluster doubles (CCD), coupled-cluster singles and doubles (CCSD), CCSD with perturbative triples correction (CCSD(T)). It is shown that all results obtained with MRLCCSD are reliable and accurate.
机译:已经进行了多次调整线性化耦合簇单双可以(MRLCCSD)对原子和分子系统的应用。 利用MRLCCSD计算HF,H2O,NH3,CH4,N-2,BF和C-2的地位能量,CC-PVDZ,CC-PVTZ和CC-PVQZ。 HF,HCl,Li-2,LiH,LiF,Lib,BH和ALF的平衡键长和振动频率用MRLCCSD计算,并与实验数据进行比较。 使用MRLCCSD计算F和CH的电子亲和力以及H 2 O和NH 3的质子亲和力。 将这些结果与用二阶扰动理论产生的结果进行比较,线性化耦合簇双打(LCCD),耦合簇双打(CCD),耦合簇单打和双打(CCSD),CCSD具有扰动三元校正(CCSD( t))。 结果表明,使用MRLCCSD获得的所有结果可靠,准确。

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