Self-consistent penning-malmberg trap

Self-consistent interaction of electrons with electric fields observed in drive space of velocity spread impulse electron beam in longitudinal homogeneous magnetic field during and after the injecting impulse was investigated. The mechanism by which non-neutral electron plasma is accumulated and con...

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Veröffentlicht in:Вопросы атомной науки и техники
Datum:2002
Hauptverfasser: Bizyukov, A.A., Volkov, E.D., Tarasov, I.K.
Format: Artikel
Sprache:English
Veröffentlicht: Національний науковий центр «Харківський фізико-технічний інститут» НАН України 2002
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Online Zugang:https://nasplib.isofts.kiev.ua/handle/123456789/80307
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Zitieren:Self-consistent penning-malmberg trap / A.A. Bizyukov, E.D. Volkov, I.K. Tarasov // Вопросы атомной науки и техники. — 2002. — № 4. — С. 146-148. — Бібліогр.: 6 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-80307
record_format dspace
spelling Bizyukov, A.A.
Volkov, E.D.
Tarasov, I.K.
2015-04-14T17:33:28Z
2015-04-14T17:33:28Z
2002
Self-consistent penning-malmberg trap / A.A. Bizyukov, E.D. Volkov, I.K. Tarasov // Вопросы атомной науки и техники. — 2002. — № 4. — С. 146-148. — Бібліогр.: 6 назв. — англ.
1562-6016
PACS: 52.80.Sm
https://nasplib.isofts.kiev.ua/handle/123456789/80307
Self-consistent interaction of electrons with electric fields observed in drive space of velocity spread impulse electron beam in longitudinal homogeneous magnetic field during and after the injecting impulse was investigated. The mechanism by which non-neutral electron plasma is accumulated and confined has been studied. Physical behavior of non-neutral plasma has been studied in various non-neutral particle traps, a typical of which is Penning–Malmberg trap. It is a cylindrical trap where the radial motion of the non-neutral particles is constrained by magnetic field, while the longitudinal motions are constrained by electrostatic potential well. When used as an electron trap, the electrons from a thermal cathode are injected parallel to the magnetic field while the cathode side of the electrostatic well is open. By closing the wall dynamically, the electrons that fail to escape during the well closure are trapped. In our experiments the holding electrostatic walls arise self-consistently, simultaneously with injection of an electron beam in the space of drift. Seized there are those particles that at the moment of formation of the trap were in the space of drift.
en
Національний науковий центр «Харківський фізико-технічний інститут» НАН України
Вопросы атомной науки и техники
Plasma electronics
Self-consistent penning-malmberg trap
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Self-consistent penning-malmberg trap
spellingShingle Self-consistent penning-malmberg trap
Bizyukov, A.A.
Volkov, E.D.
Tarasov, I.K.
Plasma electronics
title_short Self-consistent penning-malmberg trap
title_full Self-consistent penning-malmberg trap
title_fullStr Self-consistent penning-malmberg trap
title_full_unstemmed Self-consistent penning-malmberg trap
title_sort self-consistent penning-malmberg trap
author Bizyukov, A.A.
Volkov, E.D.
Tarasov, I.K.
author_facet Bizyukov, A.A.
Volkov, E.D.
Tarasov, I.K.
topic Plasma electronics
topic_facet Plasma electronics
publishDate 2002
language English
container_title Вопросы атомной науки и техники
publisher Національний науковий центр «Харківський фізико-технічний інститут» НАН України
format Article
description Self-consistent interaction of electrons with electric fields observed in drive space of velocity spread impulse electron beam in longitudinal homogeneous magnetic field during and after the injecting impulse was investigated. The mechanism by which non-neutral electron plasma is accumulated and confined has been studied. Physical behavior of non-neutral plasma has been studied in various non-neutral particle traps, a typical of which is Penning–Malmberg trap. It is a cylindrical trap where the radial motion of the non-neutral particles is constrained by magnetic field, while the longitudinal motions are constrained by electrostatic potential well. When used as an electron trap, the electrons from a thermal cathode are injected parallel to the magnetic field while the cathode side of the electrostatic well is open. By closing the wall dynamically, the electrons that fail to escape during the well closure are trapped. In our experiments the holding electrostatic walls arise self-consistently, simultaneously with injection of an electron beam in the space of drift. Seized there are those particles that at the moment of formation of the trap were in the space of drift.
issn 1562-6016
url https://nasplib.isofts.kiev.ua/handle/123456789/80307
citation_txt Self-consistent penning-malmberg trap / A.A. Bizyukov, E.D. Volkov, I.K. Tarasov // Вопросы атомной науки и техники. — 2002. — № 4. — С. 146-148. — Бібліогр.: 6 назв. — англ.
work_keys_str_mv AT bizyukovaa selfconsistentpenningmalmbergtrap
AT volkoved selfconsistentpenningmalmbergtrap
AT tarasovik selfconsistentpenningmalmbergtrap
first_indexed 2025-12-07T19:52:36Z
last_indexed 2025-12-07T19:52:36Z
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