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首页> 外文期刊>Bulletin of the Lebedev Physics Institute >Calculation of cross sections of simultaneous ionization in ion-atom collisions by the generalized geometrical model
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Calculation of cross sections of simultaneous ionization in ion-atom collisions by the generalized geometrical model

机译:用广义几何模型计算离子-原子碰撞中同时电离的截面

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The geometrical model (GM) of ionization in ion-atom collisions [8, 9] was generalized to describe ionization of both colliding particles (simultaneous ionization) due to electron-electron interaction. The generalized GM (GGM) allows calculation of the cross sections for electron loss by an incident particle with simultaneous target ionization at collision velocities higher than characteristic electron velocities, accurate within a factor of two with respect to the Born or impulse approximation. An advantage of the GGM, except for its simplicity, is easy calculation of p(b) (p is the ionization probability and b is the impact parameter), which makes it possible to include the contribution of simultaneous ionization into more general approximate schemes for calculating cross sections of multielectron ionization of atoms or ions.
机译:概括了离子-原子碰撞中电离的几何模型(GM)[8,9],以描述由于电子-电子相互作用而导致的两个碰撞粒子的电离(同时电离)。通用GM(GGM)允许计算入射粒子在碰撞速度高于特征电子速度时具有同时目标电离的入射粒子的电子损耗截面,相对于Born或脉冲近似,精确度在2倍以内。 GGM的优点是,除简单性外,还易于计算p(b)(p是电离几率,b是撞击参数),这使得将同时电离的贡献纳入更通用的近似方案中成为可能。计算原子或离子的多电子电离的截面。

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