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Косарев, Николай Иванович
2019-07-01T07:27:30Z
2019-07-01T07:27:30Z
2018-03
Косарев, Николай Иванович. Influence of the Doppler effect on radiative transfer in a spherical plasma under macroscopic motion of substance [Текст] / Николай Иванович Косарев // JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER. — 2018. — Т. 207. — С. 54-60
00224073
https://doi.org/10.1016/j.jqsrt.2017.12.026
https://elib.sfu-kras.ru/handle/2311/110967
The non-LTE radiative transfer in spherical plasma containing resonantly absorbing of light ions has been studied numerically under conditions of macroscopic motion of substance. Two types of macroscopic motion were simulated: radial expansion and compression (pulsation) of spherical plasma; rotation of plasma relative to an axis of symmetry. The calculations of absorption line profile of transmitted broadband radiation and the emission line profile were performed for the optically dense plasma of calcium ions on the resonance transition with wavelength 397 nm. Numerical results predict frequency shifts in the emission line profile to red wing of the spectrum for radial expansion of the plasma and to blue wing of the spectrum for the plasma compression at an average velocity of ions along the ray of sight equals to zero. The width of the emission line profile of a rotating plasma considerably exceeds the width of the profile of the static plasma, and the shift of the central frequency of resonance transition from the resonance frequency of the static plasma gives a linear velocity of ion motion along a given ray trajectory in units of thermal velocity. Knowledge of the linear radial velocity of ions can be useful for diagnostic purposes in determining the frequency and period of rotation of optically dense plasmas.
line profile
transfer radiation
absorption coefficient
source function
optical depth
rate balance equations
plasma
Influence of the Doppler effect on radiative transfer in a spherical plasma under macroscopic motion of substance
Journal Article
Journal Article Preprint
54-60
29.31.17
2019-07-01T07:27:30Z
10.1016/j.jqsrt.2017.12.026
Институт цветных металлов и материаловедения
Кафедра фундаментального естественнонаучного образования
JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER
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