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Dissociative recombination of molecular ions in the He–Ne plasma. Partial rate constants of atoms formation in the 2p 53d and 2p 54d configurations. / Ivanov, V. A.; Petrovskaya, A. S.; Skoblo, Yu E.

в: Optics and Spectroscopy (English translation of Optika i Spektroskopiya), Том 120, № 2, 01.02.2016, стр. 176-183.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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Ivanov, V. A. ; Petrovskaya, A. S. ; Skoblo, Yu E. / Dissociative recombination of molecular ions in the He–Ne plasma. Partial rate constants of atoms formation in the 2p 53d and 2p 54d configurations. в: Optics and Spectroscopy (English translation of Optika i Spektroskopiya). 2016 ; Том 120, № 2. стр. 176-183.

BibTeX

@article{6f0121e6d32740558450e6a79335c023,
title = "Dissociative recombination of molecular ions in the He–Ne plasma. Partial rate constants of atoms formation in the 2p 53d and 2p 54d configurations",
abstract = "A spectroscopic study of population processes was carried out for states of the neon atom of the 2p53d configuration in the discharge afterglow in helium with a small admixture of neon ([Ne]/[He] ≈ 10–5) at a pressure of 38 Torr. Based on the comparative analysis of time dependences of the spectral line intensities of the Ne I 2p53d → 2p53d and 2p54d → 2p53d transitions and ratio of ion densities [Ne2 + ]/[HeNe+], it has been found that the formation of excited Ne(2p53d) atoms in the afterglow caused by two dissociative recombination processes: HeNe+ + e → Ne(2p53d) + Ne and Ne2 + + e → Ne(2p53d) + Ne. Distributions of population fluxes of the 2p53d levels (Formula presented.) and (Formula presented.) —were obtained for each of these processes.",
author = "Ivanov, {V. A.} and Petrovskaya, {A. S.} and Skoblo, {Yu E.}",
year = "2016",
month = feb,
day = "1",
doi = "10.1134/S0030400X16020120",
language = "English",
volume = "120",
pages = "176--183",
journal = "OPTICS AND SPECTROSCOPY",
issn = "0030-400X",
publisher = "Pleiades Publishing",
number = "2",

}

RIS

TY - JOUR

T1 - Dissociative recombination of molecular ions in the He–Ne plasma. Partial rate constants of atoms formation in the 2p 53d and 2p 54d configurations

AU - Ivanov, V. A.

AU - Petrovskaya, A. S.

AU - Skoblo, Yu E.

PY - 2016/2/1

Y1 - 2016/2/1

N2 - A spectroscopic study of population processes was carried out for states of the neon atom of the 2p53d configuration in the discharge afterglow in helium with a small admixture of neon ([Ne]/[He] ≈ 10–5) at a pressure of 38 Torr. Based on the comparative analysis of time dependences of the spectral line intensities of the Ne I 2p53d → 2p53d and 2p54d → 2p53d transitions and ratio of ion densities [Ne2 + ]/[HeNe+], it has been found that the formation of excited Ne(2p53d) atoms in the afterglow caused by two dissociative recombination processes: HeNe+ + e → Ne(2p53d) + Ne and Ne2 + + e → Ne(2p53d) + Ne. Distributions of population fluxes of the 2p53d levels (Formula presented.) and (Formula presented.) —were obtained for each of these processes.

AB - A spectroscopic study of population processes was carried out for states of the neon atom of the 2p53d configuration in the discharge afterglow in helium with a small admixture of neon ([Ne]/[He] ≈ 10–5) at a pressure of 38 Torr. Based on the comparative analysis of time dependences of the spectral line intensities of the Ne I 2p53d → 2p53d and 2p54d → 2p53d transitions and ratio of ion densities [Ne2 + ]/[HeNe+], it has been found that the formation of excited Ne(2p53d) atoms in the afterglow caused by two dissociative recombination processes: HeNe+ + e → Ne(2p53d) + Ne and Ne2 + + e → Ne(2p53d) + Ne. Distributions of population fluxes of the 2p53d levels (Formula presented.) and (Formula presented.) —were obtained for each of these processes.

UR - http://www.scopus.com/inward/record.url?scp=84962650022&partnerID=8YFLogxK

U2 - 10.1134/S0030400X16020120

DO - 10.1134/S0030400X16020120

M3 - Article

AN - SCOPUS:84962650022

VL - 120

SP - 176

EP - 183

JO - OPTICS AND SPECTROSCOPY

JF - OPTICS AND SPECTROSCOPY

SN - 0030-400X

IS - 2

ER -

ID: 51868204