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Thermodynamic model for electron emission and negative- and positive-ion formation in keV molecular collisions

机译:KeV分子碰撞中电子发射和负离子和正离子形成的热力学模型

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A statistical-type model is developed to describe the ion production and electron emission in collisions of (molecular) ions with atoms. The model is based on the Boltzmann population of the bound electronic energy levels of the quasimolecule formed in the collision and the discretized continuum. The discretization of the continuum is implemented by a free-electron gas in a box model assuming an effective square potential of the quasimolecule. The temperature of the electron gas is calculated by taking into account a thermodynamically adiabatic process due to the change of the effective volume of the quasimolecule as the system evolves. The system may undergo a transition with a small probability from the discretized continuum to the states of the complementary continuum. It is assumed that these states are decoupled from the thermodynamic time development. The decoupled states overwhelmingly determine the yield of the asymptotically observed fragment ions. The main motivation of this work is to describe the recently observed H~? ion production in OH~+ + Ar collisions. The obtained differential cross sections for H~? formation, cation production, and electron emission are close to the experimental ones. Calculations for the atomic systems O~+ + Ar and H~+ + Ar are also in reasonable agreement with the experiments indicating that the model can be applied to a wide class of collisions.
机译:开发了一种统计型模型,以描述(分子)离子与原子的碰撞中的离子生产和电子发射。该模型基于碰撞中形成的准叠电器的Boltzmann群体和离散的连续体。连续内的离散化是通过盒式模型中的自由电子气体来实现,假设Quasimolecule的有效方形电位。通过考虑由于系统的有效体积的变化而引起的热力学性绝热过程来计算电子气体的温度。该系统可以从离散的连续统一到互补连续体的状态进行过渡。假设这些状态与热力学时间显影分离。解耦状态压倒性地确定渐近观察到的片段离子的产率。这项工作的主要动机是描述最近观察到的H〜? OH〜+ + AR碰撞中的离子生产。获得的差分横截面为h〜?形成,阳离子生产和电子发射接近实验性。原子系统O〜+ + Ar和H〜+ + AR的计算也与实验合理一致,表明该模型可以应用于广泛的碰撞。

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