Spectral-Kinetic Coupling and Effect of Microfield Rotation on Stark Broadening in Plasmas

Author: Demura Alexander V.   Stambulchik Evgeny  

Publisher: MDPI

E-ISSN: 2218-2004|2|3|334-356

ISSN: 2218-2004

Source: Atoms, Vol.2, Iss.3, 2014-07, pp. : 334-356

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Abstract

The study deals with two conceptual problems in the theory of Stark broadening by plasmas. One problem is the assumption of the density matrix diagonality in the calculation of spectral line profiles. This assumption is closely related to the definition of zero wave functions basis within which the density matrix is assumed to be diagonal, and obviously violated under the basis change. A consistent use of density matrix in the theoretical scheme inevitably leads to interdependence of atomic kinetics, describing the population of atomic states with the Stark profiles of spectral lines, i.e., to spectral-kinetic coupling. The other problem is connected with the study of the influence of microfield fluctuations on Stark profiles. Here the main results of the perturbative approach to ion dynamics, called the theory of thermal corrections (TTC), are presented, within which the main contribution to effects of ion dynamics is due to microfield fluctuations caused by rotations. In the present study the qualitative behavior of the Stark profiles in the line center within predictions of TTC is confirmed, using non-perturbative computer simulations.