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首页> 外文期刊>The Journal of Chemical Physics >A new potential energy surface for OH(A ~2Σ ~+)-Kr: The van der Waals complex and inelastic scattering
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A new potential energy surface for OH(A ~2Σ ~+)-Kr: The van der Waals complex and inelastic scattering

机译:OH(A〜2Σ〜+)-Kr的新势能面:范德华复合体和非弹性散射

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摘要

New ab initio studies of the OH(A ~2Σ)-Kr system reveal significantly deeper potential energy wells than previously believed, particularly for the linear configuration in which Kr is bound to the oxygen atom side of OH(A ~2Σ). In spite of this difference with previous work, bound state calculations based on a new RCCSD(T) potential energy surface yield an energy level structure in reasonable accord with previous studies. However, the new calculations suggest the need for a reassignment of the vibrational levels of the electronically excited complex. Quantum mechanical and quasi-classical trajectory scattering calculations are also performed on the new potential energy surface. New experimental measurements of rotational inelastic scattering cross sections are reported, obtained using Zeeman quantum beat spectroscopy. The values of the rotational energy transfer cross sections measured experimentally are in good agreement with those derived from the dynamical calculations on the new adiabatic potential energy surface.
机译:OH(A〜2Σ)-Kr系统的从头算研究表明,势能阱比以前认为的要深得多,尤其是对于其中Kr与OH(A〜2Σ)的氧原子侧结合的线性构型。尽管与以前的工作有所不同,但基于新的RCCSD(T)势能面的束缚态计算仍会产生与先前研究合理相符的能级结构。但是,新的计算表明需要重新分配电子激发复合物的振动水平。还对新的势能面进行了量子力学和准经典轨迹散射计算。旋转非弹性散射截面的新实验测量方法已有报道,这是使用Zeeman量子拍谱技术获得的。实验测得的旋转能量转移截面的值与从绝热新势能面上的动力学计算得出的值非常吻合。

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