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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Inelastic rate coefficients based on an improved potential energy surface for N-2 + N-2 collisions in a wide temperature range
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Inelastic rate coefficients based on an improved potential energy surface for N-2 + N-2 collisions in a wide temperature range

机译:基于在宽温度范围内的N-2 + N-2碰撞的改进的电位能表面的非弹性速率系数

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摘要

A modification in the potential energy surface (PES) for N-2-N-2 interactions, reported in the literature [D. Cappelletti et al., Phys. Chem. Chem. Phys., 2008, 10, 4281], has been presented to improve its description of, particularly, the short range behavior for specific configurations, with the aim of producing a large database of vibration to vibration (V-V) and vibration to translation/rotation (V-T/R) energy transfer rate coefficients, with an increased accuracy extended to large temperature ranges relevant to the modeling of hypersonic gas flows. The modifications were introduced in a physically meaningful fashion and they are shown to improve the performance of the PES in a wide temperature range, not only for calculating rate coefficients, but also for determining a variety of physical properties. This new PES was then used to calculate V-V and V-T/R rate coefficients for inelastic N-2-N-2 collisions through a mixed quantum-classical method, based on the quantum treatment of molecular vibrations, for vibrationally excited states up to v = 40. Such a large V-T/R coefficient database is quite unprecedented, and the comparison of the efficiency of the related processes with the corresponding V-V coefficients shows that vibrational relaxation plays a very relevant role in high temperature regimes.
机译:文献中报道了N-2-N-2相互作用的潜在能量表面(PE)的修饰[D. Cappelletti等人。,phy。化学。化学。已经提出了Phys,2008,10,4281]以改善其对特定配置的简要范围行为的描述,目的是产生大量振动数据库,以振动(VV)和振动到翻译/旋转(VT / R)能量传递速率系数,精度提高到与高超声气流动建模相关的大温度范围。这些修改以物理上有意义的方式引入,并且显示它们在宽温度范围内提高PE的性能,不仅用于计算速率系数,而且还用于确定各种物理性质。然后使用这种新的PE通过混合量子古典方法计算非弹性N-2-N-2碰撞的VV和VT / R速率系数,基于分子振动的量子处理,用于振动激励状态达到v = 40.这种大的VT / R系数数据库是非常前所未有的,并且具有相应的VV系数的相关过程效率的比较表明,振动松弛在高温制度中起着非常相关的作用。

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