首页> 外文期刊>The Journal of Chemical Physics >Collisional excitation of NH(X-3 Sigma(-)) by Ne: Potential energy surface, scattering calculations, and comparison with experiments
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Collisional excitation of NH(X-3 Sigma(-)) by Ne: Potential energy surface, scattering calculations, and comparison with experiments

机译:Ne对NH(X-3 Sigma(-))的碰撞激发:势能面,散射计算以及与实验的比较

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We present a new three-dimensional potential energy surface (PES) for the NH(X-3 Sigma(-)) Ne van der Waals system, which explicitly takes into account the NH vibrational motion. Ab initio calculations of the NH Ne PES were carried out using the open-shell single- and double-excitation coupled cluster approach with non-iterative perturbational treatment of triple excitations [RCCSD(T)]. The augmented correlation-consistent quadruple zeta (aug-cc-pVQZ) basis set was employed. Mid-bond functions were also included in order to improve the accuracy in the van der Waals well. Using this new PES, we have studied the collisional excitation of NH(X-3 Sigma(-)) by Ne. Close-coupling calculations of the collisional excitation cross sections of the fine-structure levels of NH by Ne are performed for energies up to 3000 cm(-1), which yield, after thermal average, rate coefficients up to 350 K. The propensity rules between fine-structure levels are reported, and it is found that F-conserving cross sections are larger than F-changing cross sections even if the propensity rules are not as strong as for the NH He system. The calculated rate coefficients are compared with available experimental measurements at room temperature and a fairly good agreement is found between experimental and theoretical data, confirming the good quality of the scattering calculations and also the accuracy of the potential energy surface used in this work. (C) 2015 AIP Publishing LLC.
机译:我们为NH(X-3 Sigma(-))Ne van der Waals系统提出了一个新的三维势能面(PES),其中明确考虑了NH振动运动。 NH Ne PES的从头算是使用开环单激发和双激发耦合簇方法以及三次激发的非迭代微扰处理[RCCSD(T)]进行的。采用了增强的相关一致的四重zeta(aug-cc-pVQZ)基础集。还包括中键功能,以提高范德华力的精度。使用这种新的PES,我们研究了Ne对NH(X-3 Sigma(-))的碰撞激发。对于能量高达3000 cm(-1)的能量,进行了NH的精细结构能级的碰撞激发截面的Ne的紧密耦合计算,这在热平均后产生了最高350 K的速率系数。倾向性规则据报道,在细微结构水平之间,即使倾向性规则不如NH He系统强,F保持截面也比F改变截面大。将计算出的速率系数与室温下可用的实验测量值进行比较,并且在实验数据和理论数据之间找到了相当好的一致性,从而证实了散射计算的良好质量以及这项工作中使用的势能面的准确性。 (C)2015 AIP Publishing LLC。

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