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Threshold Behavior of Volume Dust Cluster Untwisting in a Magnetic Field. / Karasev, V. Yu; Dzlieva, E. S.; Pavlov, S. I.; Novikov, L. A.; Eikhval’d, A. I.; Mashek, I. Ch.

в: Technical Physics, Том 65, № 2, 01.02.2020, стр. 190-193.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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@article{5b4861b962aa4499a581bee5d558f7e7,
title = "Threshold Behavior of Volume Dust Cluster Untwisting in a Magnetic Field",
abstract = "The action of a magnetic field on the behavior of a bulk dust cluster formed in the strata of a glowing discharge has been studied. The cluster that consists of seven chains of particles and is a hexagonal cell in the horizontal cross-section has been studied. It has been found that the rotation of a dust cluster arises in nonzero magnetic field unlike the dusty structure containing many particles in the horizontal cross-section. Moreover, it has been found that the threshold behavior of the occurrence of rotation in the cluster is affected by the discharge current and plasma-forming gas pressure. The enhancement of the ionization inside a dust cluster is suggested as an interpretation. The radial ion flux that moves in the longitudinal magnetic field from the dusty structure to the discharge tube wall additionally twists the structure with the negative projection of an angular velocity on the magnetic induction vector.",
author = "Karasev, {V. Yu} and Dzlieva, {E. S.} and Pavlov, {S. I.} and Novikov, {L. A.} and Eikhval{\textquoteright}d, {A. I.} and Mashek, {I. Ch}",
year = "2020",
month = feb,
day = "1",
doi = "10.1134/S1063784220020085",
language = "English",
volume = "65",
pages = "190--193",
journal = "Technical Physics",
issn = "1063-7842",
publisher = "Pleiades Publishing",
number = "2",

}

RIS

TY - JOUR

T1 - Threshold Behavior of Volume Dust Cluster Untwisting in a Magnetic Field

AU - Karasev, V. Yu

AU - Dzlieva, E. S.

AU - Pavlov, S. I.

AU - Novikov, L. A.

AU - Eikhval’d, A. I.

AU - Mashek, I. Ch

PY - 2020/2/1

Y1 - 2020/2/1

N2 - The action of a magnetic field on the behavior of a bulk dust cluster formed in the strata of a glowing discharge has been studied. The cluster that consists of seven chains of particles and is a hexagonal cell in the horizontal cross-section has been studied. It has been found that the rotation of a dust cluster arises in nonzero magnetic field unlike the dusty structure containing many particles in the horizontal cross-section. Moreover, it has been found that the threshold behavior of the occurrence of rotation in the cluster is affected by the discharge current and plasma-forming gas pressure. The enhancement of the ionization inside a dust cluster is suggested as an interpretation. The radial ion flux that moves in the longitudinal magnetic field from the dusty structure to the discharge tube wall additionally twists the structure with the negative projection of an angular velocity on the magnetic induction vector.

AB - The action of a magnetic field on the behavior of a bulk dust cluster formed in the strata of a glowing discharge has been studied. The cluster that consists of seven chains of particles and is a hexagonal cell in the horizontal cross-section has been studied. It has been found that the rotation of a dust cluster arises in nonzero magnetic field unlike the dusty structure containing many particles in the horizontal cross-section. Moreover, it has been found that the threshold behavior of the occurrence of rotation in the cluster is affected by the discharge current and plasma-forming gas pressure. The enhancement of the ionization inside a dust cluster is suggested as an interpretation. The radial ion flux that moves in the longitudinal magnetic field from the dusty structure to the discharge tube wall additionally twists the structure with the negative projection of an angular velocity on the magnetic induction vector.

UR - http://www.scopus.com/inward/record.url?scp=85083857450&partnerID=8YFLogxK

U2 - 10.1134/S1063784220020085

DO - 10.1134/S1063784220020085

M3 - Article

AN - SCOPUS:85083857450

VL - 65

SP - 190

EP - 193

JO - Technical Physics

JF - Technical Physics

SN - 1063-7842

IS - 2

ER -

ID: 62720632