首页> 外文期刊>The Journal of Chemical Physics >Rotationally inelastic collisions of SO(X (3)Sigma(-)) with H-2: Potential energy surface and rate coefficients for excitation by para-H-2 at low temperature
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Rotationally inelastic collisions of SO(X (3)Sigma(-)) with H-2: Potential energy surface and rate coefficients for excitation by para-H-2 at low temperature

机译:SO(X(3)Sigma(-))与H-2的旋转非弹性碰撞:低温下对位H-2激发的势能面和速率系数

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Rotational excitation of the interstellar species SO(X (3)Sigma(-)) with H-2 is investigated. The authors present a new four-dimensional potential energy surface for the SO-H-2 system, calculated at an internuclear SO distance frozen at its experimental minimum energy distance. It was obtained at the RCCSD(T) level using the aug-cc-pVTZ basis sets for the four atoms. Bond functions were placed at mid-distance between the SO center of mass and the center of mass of H-2 for a better description of the van der Waals interaction. Close coupling calculations of the collisional excitation cross sections between the fine structure levels of SO by collisions with para-H-2 are calculated at low energies which yield, after Boltzmann thermal average, rate coefficients up to 50 K. The exact level splitting is taken into account. The propensity rules between fine structure levels are studied. It is shown that F-conserving cross sections are much larger, especially for high-N rotational levels, than F-changing cross sections, as found previously for SO-He collisions and expected from theoretical considerations. The new rate coefficients are compared with previous results obtained for this molecule and they find that important differences exist that can induce important consequences on astrophysical modeling. Comparison with excitation by collision with He shows that the rate coefficients differ by important factors that cannot be only explained by the reduced mass ratio in the thermal average. This may be due to differences between the potential energy surfaces as well as to the contribution of the different reduced masses in the scattering equations. (c) 2007 American Institute of Physics.
机译:研究了H-2对星际物质SO(X(3)Sigma(-))的旋转激发。作者介绍了SO-H-2系统的新的四维势能面,该面是在冻结在其实验最小能量距离处的核间SO距离处计算的。它是使用四个原子的aug-cc-pVTZ基集在RCCSD(T)级别获得的。键合函数放置在SO重心与H-2重心之间的中间距离处,以更好地描述范德华相互作用。在低能量下,通过与para-H-2的碰撞,计算出SO的精细结构能级之间的碰撞激发截面的紧密耦合计算,这在Boltzmann热平均后得出速率系数高达50K。进行了精确的能级分裂考虑在内。研究了精细结构水平之间的倾向性规律。结果表明,与F变化的横截面相比,F保留的横截面要大得多,特别是对于高N旋转水平而言,这是先前针对SO-He碰撞发现的以及理论上的预期。将新的速率系数与该分子先前获得的结果进行比较,他们发现存在重要差异,这些差异可能对天体物理建模产生重要影响。与通过与He碰撞而激发的比较表明,速率系数存在重要因素,这不能仅通过降低平均热质量比来解释。这可能是由于势能面之间的差异以及散射方程中不同折减质量的贡献所致。 (c)2007年美国物理研究所。

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