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首页> 外文期刊>The Journal of Chemical Physics >Ab initio rovibrational spectroscopy of hydrogen sulfide
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Ab initio rovibrational spectroscopy of hydrogen sulfide

机译:硫化氢的从头算振动光谱

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Potential energy hypersurfaces (PBS) have been constructed for the ground electronic state of H_2S utilizing results from state-of-the-art ab initio quantum chemical methods, most notably higher-order coupled cluster theory employing (core-polarized) correlation-consistent basis sets. Small corrections due to extrapolation to the complete basis set and full configuration interaction limits, core correlation, and relativistic corrections, as well as effects beyond the Born- Oppenheimer approximation have been investigated and incorporated into the final PBS. Using the exact rovibrational kinetic energy operator rovibrational energy levels have been computed with the different PESs. The final converged ab initic PBS of this study reproduces the available vibrational band origins of H_2 ~(32)S HD~(32)S, D_2 ~(32)S, and H_2 ~(34) S with maximum deviations, gradually increasing for increased vibrational excitation, of 29(14 300), 10(3800), 7(4600), and 12(6400) cm~(-1), respectively, where the maximum energy above the zero-point energy is given in parentheses. The errors are considerably larger for the bending states than for the stretching states. Reproduction of rotational term values, given explicitly for J= 17 of the vibrational ground state, shows remarkable agreement between experiment and the purely ab initio approach of this study.
机译:利用最新的从头算量子化学方法获得的结果,为H_2S的基态电子势能构建了势能超表面(PBS),其中最显着的是采用(核极化)相关一致的基础的高阶耦合簇理论套。已经研究了由于外推到完整基集和完整配置相互作用限制,核心相关性和相对论性校正以及超出Born-Oppenheimer逼近的影响而进行的小校正,并将其合并到最终PBS中。使用精确的振动动能算子,已经用不同的PES计算了振动能级。这项研究的最终收敛性仿制药PBS以最大偏差再现了H_2〜(32)S HD〜(32)S,D_2〜(32)S和H_2〜(34)S的可用振动带起源,并逐渐增大。增加的振动激励分别为29(14 300),10(3800),7(4600)和12(6400)cm〜(-1),其中零点能量以上的最大能量在括号中给出。弯曲状态的误差比拉伸状态的误差大得多。对于振动基态的J = 17明确给出的旋转项值的再现,表明实验与本研究的完全从头开始的方法之间具有显着的一致性。

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