Energy of a single electron in gaseous media

The so-called «optical» approximation in the theory of electron energy spectrum in the presence of scattering centers with positive scattering length randomly distributed with the average density ng is considered for a number of inert gases. The average minimal energy W of a single electron calcul...

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Опубліковано в: :Физика низких температур
Дата:2007
Автори: Shikin, V.B., Nazin, S.S.
Формат: Стаття
Мова:English
Опубліковано: Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України 2007
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Онлайн доступ:https://nasplib.isofts.kiev.ua/handle/123456789/121800
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Energy of a single electron in gaseous media / V.B. Shikin, S.S. Nazin // Физика низких температур. — 2007. — Т. 33, № 6-7. — С. 820-823. — Бібліогр.: 29 назв. — англ.

Репозитарії

Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-121800
record_format dspace
spelling Shikin, V.B.
Nazin, S.S.
2017-06-16T08:19:04Z
2017-06-16T08:19:04Z
2007
Energy of a single electron in gaseous media / V.B. Shikin, S.S. Nazin // Физика низких температур. — 2007. — Т. 33, № 6-7. — С. 820-823. — Бібліогр.: 29 назв. — англ.
0132-6414
PACS: 71.10.Ca; 71.10.–w
https://nasplib.isofts.kiev.ua/handle/123456789/121800
The so-called «optical» approximation in the theory of electron energy spectrum in the presence of scattering centers with positive scattering length randomly distributed with the average density ng is considered for a number of inert gases. The average minimal energy W of a single electron calculated beyond the optical approximation reveals a behavior qualitatively different from that of the same quantity W₀ derived within the optical approximation. Results of calculations are in qualitative agreement with experimental data available for theW(ng) dependence for different cryogenic gases.
This work was supported by visitor scientist program of Max Planck Institute for Physics of Complex Systems at Dresden, Germany, the Russian Foundation for Basic Research grant #06-02-17121 and the Program «Physics of Condensed Matter» of the Presidium of Russian Academy of Sciences.
en
Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
Физика низких температур
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Energy of a single electron in gaseous media
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Energy of a single electron in gaseous media
spellingShingle Energy of a single electron in gaseous media
Shikin, V.B.
Nazin, S.S.
Related Topics
title_short Energy of a single electron in gaseous media
title_full Energy of a single electron in gaseous media
title_fullStr Energy of a single electron in gaseous media
title_full_unstemmed Energy of a single electron in gaseous media
title_sort energy of a single electron in gaseous media
author Shikin, V.B.
Nazin, S.S.
author_facet Shikin, V.B.
Nazin, S.S.
topic Related Topics
topic_facet Related Topics
publishDate 2007
language English
container_title Физика низких температур
publisher Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
format Article
description The so-called «optical» approximation in the theory of electron energy spectrum in the presence of scattering centers with positive scattering length randomly distributed with the average density ng is considered for a number of inert gases. The average minimal energy W of a single electron calculated beyond the optical approximation reveals a behavior qualitatively different from that of the same quantity W₀ derived within the optical approximation. Results of calculations are in qualitative agreement with experimental data available for theW(ng) dependence for different cryogenic gases.
issn 0132-6414
url https://nasplib.isofts.kiev.ua/handle/123456789/121800
citation_txt Energy of a single electron in gaseous media / V.B. Shikin, S.S. Nazin // Физика низких температур. — 2007. — Т. 33, № 6-7. — С. 820-823. — Бібліогр.: 29 назв. — англ.
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