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首页> 外文期刊>Plasma Sources Science & Technology >Comparisons and scaling rules between N+N_2 and N_2+N_2 collision induced dissociation cross sections from atomistic studies
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Comparisons and scaling rules between N+N_2 and N_2+N_2 collision induced dissociation cross sections from atomistic studies

机译:N + N_2和N_2 + N_2碰撞之间的比较和缩放规则来自原子学研究的解离横截面

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Quantitative knowledge of elementary processes involved in plasmas are key to successfully perform accurate kinetic simulations. The issue is the huge amount of data to treat, both in the dynamical calculation and in the kinetic simulation. The aim of this paper is to study the dissociation in atom-molecule (AM) and molecule-molecule (MM) collisions involving nitrogen, obtained by molecular dynamics calculations considering vibrational states in the range 10-50 and collision energy up to 10 eV, in order to formulate suitable scaling laws resulting in less expensive computational procedures and easier to handle treatments in kinetic simulations. It is shown that, while a direct substitution of MM dissociation cross sections with AM ones might be acceptable only at very high collision energy, scaling laws application allows to obtain quite good results on almost the whole energy range of interest.
机译:涉及等离子体中涉及的基本进程的定量知识是成功执行准确的动力模拟的关键。 问题是在动态计算和动力学模拟中对待大量数据。 本文的目的是研究涉及氮的原子分子(AM)和分子分子(MM)碰撞中的解离,通过分子动力学计算,考虑到10-50范围内的振动状态,碰撞能量高达10eV, 为了制定合适的缩放法律,导致更便宜的计算程序,更容易处理动力学模拟中的治疗。 结果表明,虽然只有在非常高的碰撞能量下可以接受MM解离横截面的直接取代,但缩放法律应用允许在几乎整个能量范围内获得相当好的结果。

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