Rajačić, Luka

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  • Rajačić, Luka (1)
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Study of UV Ne II line shapes in the cathode sheath of an abnormal glow discharge

Spasojević, Djordje; Ivanović, Nikola V.; Nedić, Nikodin V.; Rajačić, Luka; Šišović, Nikola M.; Konjević, Nikola

(Elsevier Ltd, 2021)

TY  - JOUR
AU  - Spasojević, Djordje
AU  - Ivanović, Nikola V.
AU  - Nedić, Nikodin V.
AU  - Rajačić, Luka
AU  - Šišović, Nikola M.
AU  - Konjević, Nikola
PY  - 2021
UR  - http://aspace.agrif.bg.ac.rs/handle/123456789/5989
AB  - We report results of an experimental and theoretical study of complex UV line shapes of Ne II 369.421 nm, Ne II 370.962 nm, Ne II 371.308 nm, and. Ne II 372.711 nm lines in the cathode sheath (CS) region of an abnormal DC glow discharge in pure neon. Two sets of experimental profiles and electric field distributions, one for discharge with tungsten and the other with titanium cathode, were obtained by means of the optical emission spectroscopy (OES) and theoretically studied by the iterative CS kinetic model. It is shown that our theoretical model enables the determination of the most important CS parameters (e.g. the thickness of the CS region, and the theoretical distributions of electric field and gas temperature) and thereupon based accurate theoretical predictions of the experimentally observed profiles of the studied lines.
PB  - Elsevier Ltd
T2  - Advances in Space Research
T1  - Study of UV Ne II line shapes in the cathode sheath of an abnormal glow discharge
DO  - 10.1016/j.asr.2021.11.014
ER  - 
@article{
author = "Spasojević, Djordje and Ivanović, Nikola V. and Nedić, Nikodin V. and Rajačić, Luka and Šišović, Nikola M. and Konjević, Nikola",
year = "2021",
abstract = "We report results of an experimental and theoretical study of complex UV line shapes of Ne II 369.421 nm, Ne II 370.962 nm, Ne II 371.308 nm, and. Ne II 372.711 nm lines in the cathode sheath (CS) region of an abnormal DC glow discharge in pure neon. Two sets of experimental profiles and electric field distributions, one for discharge with tungsten and the other with titanium cathode, were obtained by means of the optical emission spectroscopy (OES) and theoretically studied by the iterative CS kinetic model. It is shown that our theoretical model enables the determination of the most important CS parameters (e.g. the thickness of the CS region, and the theoretical distributions of electric field and gas temperature) and thereupon based accurate theoretical predictions of the experimentally observed profiles of the studied lines.",
publisher = "Elsevier Ltd",
journal = "Advances in Space Research",
title = "Study of UV Ne II line shapes in the cathode sheath of an abnormal glow discharge",
doi = "10.1016/j.asr.2021.11.014"
}
Spasojević, D., Ivanović, N. V., Nedić, N. V., Rajačić, L., Šišović, N. M.,& Konjević, N.. (2021). Study of UV Ne II line shapes in the cathode sheath of an abnormal glow discharge. in Advances in Space Research
Elsevier Ltd..
https://doi.org/10.1016/j.asr.2021.11.014
Spasojević D, Ivanović NV, Nedić NV, Rajačić L, Šišović NM, Konjević N. Study of UV Ne II line shapes in the cathode sheath of an abnormal glow discharge. in Advances in Space Research. 2021;.
doi:10.1016/j.asr.2021.11.014 .
Spasojević, Djordje, Ivanović, Nikola V., Nedić, Nikodin V., Rajačić, Luka, Šišović, Nikola M., Konjević, Nikola, "Study of UV Ne II line shapes in the cathode sheath of an abnormal glow discharge" in Advances in Space Research (2021),
https://doi.org/10.1016/j.asr.2021.11.014 . .
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