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The role of high-energy electrons during the formation of nonstationary optical emission and transmission spectra of plasma behind the edge of high-velocity ionization waves

The dynamics of the population of excited states of atoms in metastable states and nonstationary optical emission and transmission spectra of nanosecond discharges in plasma waveguides filled with inert gases in a wide range of variation of external conditions are studied experimentally. Estimates o...

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Published in:High temperature 2015-09, Vol.53 (5), p.627-637
Main Authors: Ashurbekov, N. A., Iminov, K. O., Shakhsinov, G. Sh, Ramazanov, A. R.
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description The dynamics of the population of excited states of atoms in metastable states and nonstationary optical emission and transmission spectra of nanosecond discharges in plasma waveguides filled with inert gases in a wide range of variation of external conditions are studied experimentally. Estimates of the energy of electrons accelerated at the edge of the high-velocity ionization wave are given, and the effect of high-energy electrons on the dynamics of the development of nanosecond discharge in shielded dielectric tubes is analyzed. The results of the experimental study of the processes of formation of the transverse plasma parameter distribution are presented, and their role during the formation of the transmission spectra of nonuniform plasma of nanosecond discharges near narrow spectral absorption lines is determined. For the first time, the formation of transmission spectra of the dispersion type near spectral absorption lines of neon atoms is discovered and studied in experiments outside the resonator.
doi_str_mv 10.1134/S0018151X15030025
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source Springer Nature
subjects Atoms and Molecules in Strong Fields
Classical and Continuum Physics
Industrial Chemistry/Chemical Engineering
Laser Matter Interaction
Materials Science
Physical Chemistry
Physics
Physics and Astronomy
Plasma Investigations
title The role of high-energy electrons during the formation of nonstationary optical emission and transmission spectra of plasma behind the edge of high-velocity ionization waves
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