McKemmish Laura K, Tennyson Jonathan
School of Chemistry, University of New South Wales, Kensington, Sydney, NSW 2052, Australia.
Department of Physics and Astronomy, University College London, London WC1E 6BT, UK.
Philos Trans A Math Phys Eng Sci. 2019 Sep 23;377(2154):20180409. doi: 10.1098/rsta.2018.0409. Epub 2019 Aug 5.
Accurately modelling cold and ultracold reactive collisions occurring over deep potential wells, such as [Formula: see text], requires the development of new theoretical and computational methodologies. One potentially useful framework is the R-matrix method adopted widely for electron-molecule collisions which has more recently been applied to non-reactive heavy-particle collisions such as Ar-Ar. The existing treatment of non-reactive elastic and inelastic scattering needs to be substantially extended to enable modelling of reactive collisions: this is the subject of this paper. Herein, we develop the general mathematical formulation for non-reactive elastic and inelastic scattering, photoassociation, photodissociation, charge exchange and reactive scattering using the R-matrix method. Of particular note is that the inner region, of central importance to calculable R-matrix methodologies, must be finite in all scattering coordinates rather than a single scattering coordinate as for non-reactive scattering. This article is part of a discussion meeting issue 'Advances in hydrogen molecular ions: H, H and beyond'.
准确模拟在深势阱中发生的冷和超冷反应性碰撞,例如[公式:见文本],需要开发新的理论和计算方法。一个潜在有用的框架是广泛应用于电子 - 分子碰撞的R矩阵方法,该方法最近已应用于非反应性重粒子碰撞,如氩 - 氩碰撞。现有的非反应性弹性和非弹性散射处理需要大幅扩展,以实现对反应性碰撞的建模:这是本文的主题。在此,我们使用R矩阵方法开发了用于非反应性弹性和非弹性散射、光缔合、光解离、电荷交换和反应性散射的通用数学公式。特别值得注意的是,对于可计算的R矩阵方法至关重要的内部区域,在所有散射坐标中都必须是有限的,而不像非反应性散射那样只在单个散射坐标中是有限的。本文是“氢分子离子的进展:H₂⁺、H₂及其他”讨论会议特刊的一部分。