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A new ab initio potential energy surface for the collisional excitation of N2H+ by H-2

机译:H-2碰撞激发N2H +的新的从头算势能面

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We compute a new potential energy surface (PES) for the study of the inelastic collisions between N2H+ and H-2 molecules. A preliminary study of the reactivity of N2H+ with H-2 shows that neglecting reactive channels in collisional excitation studies is certainly valid at low temperatures. The four dimensional (4D) N2H+-H-2 PES is obtained from electronic structure calculations using the coupled cluster with single, double, and perturbative triple excitation level of theory. The atoms are described by the augmented correlation consistent triple zeta basis set. Both molecules were treated as rigid rotors. The potential energy surface exhibits a well depth of similar or equal to 2530 cm(-1). Considering this very deep well, it appears that converged scattering calculations that take into account the rotational structure of both N2H+ and H-2 should be very difficult to carry out. To overcome this difficulty, the "adiabatic-hindered-rotor" treatment, which allows para-H-2(j = 0) to be treated as if it were spherical, was used in order to reduce the scattering calculations to a 2D problem. The validity of this approach is checked and we find that cross sections and rate coefficients computed from the adiabatic reduced surface are in very good agreement with the full 4D calculations. (C) 2015 AIP Publishing LLC.
机译:我们计算出一个新的势能面(PES),用于研究N2H +和H-2分子之间的非弹性碰撞。对N2H +与H-2的反应性的初步研究表明,在碰撞激发研究中忽略反应性通道在低温下当然是有效的。二维(4D)N2H + -H-2 PES是使用具有单,双和微扰三重激发水平理论的耦合簇从电子结构计算中获得的。原子由增强相关一致三重zeta基集描述。两种分子均被视为刚性转子。势能表面展现出的井深相似或等于2530 cm(-1)。考虑到这口深井,似乎很难进行考虑N2H +和H-2旋转结构的会聚散射计算。为了克服这个困难,为了将散射计算减少到二维问题,使用了“绝热受阻转子”处理,该处理允许将对H-2(j = 0)视为球形。检查了这种方法的有效性,我们发现从绝热还原表面计算出的横截面和速率系数与完整的4D计算非常吻合。 (C)2015 AIP Publishing LLC。

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