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Kinetic Equations for Stark Line Shapes

机译:斯塔克线形的动力学方程

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The Bogoliubov-Born-Green-Kirkwood-Yvon (BBGKY) formalism is revisited in the framework of plasma spectroscopy. We address the issue of Stark line shape modeling by using kinetic transport equations. In the most simplified treatment of these equations, triple correlations between an emitter and the perturbing charged particles are neglected and a collisional description of Stark effect is obtained. Here we relax this assumption and retain triple correlations using a generalization of the Kirkwood truncature hypothesis to quantum operator. An application to hydrogen lines is done in the context of plasma diagnostic. It is shown that the neglect of triple correlations can lead to a significant overestimate of the line width.
机译:Bogoliubov-Born-Green-Kirkwood-Yvon(BBGKY)形式主义在等离子光谱学框架内得到了重新审视。我们通过使用动力学输运方程解决了Stark线形建模的问题。在这些方程式的最简化处理中,忽略了发射器与扰动的带电粒子之间的三重相关性,并获得了Stark效应的碰撞描述。在这里,我们放宽这个假设,并使用柯克伍德截断假设到量子算子的推广来保留三重相关性。在等离子体诊断的背景下完成了对氢管线的应用。结果表明,三重相关性的忽略会导致线宽的明显高估。

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