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Physical mechanisms for the hydrodynamic beam-plasma instability

,  a
a National Scientific Centre ‘Kharkov Physicotechnical Institute’, ul. Akademicheskaya 1, Kharkov, 310108, Ukraine

A quantitative study is made of the physical mechanisms responsible for the development of a collective hydrodynamic instability of a charged-particle beam in an isotropic plasma. The corresponding growth rate is calculated through an analysis of the dynamics of the motion of the beam particles in the field of their radiation. The coherence of the beam particles is responsible for a substantial amplification of the collective field excited by these particles. This field forms coherent bunches by the Veksler--MacMillan self-phasing mechanism. This review is addressed to specialists in plasma physics and microwave electronics.

Fulltext pdf (513 KB)
Fulltext is also available at DOI: 10.1070/PU1988v031n08ABEH004928
PACS: 52.35.Qz
DOI: 10.1070/PU1988v031n08ABEH004928
URL: https://ufn.ru/en/articles/1988/8/d/
Citation: Kalmykova S S, Kurilko V I "Physical mechanisms for the hydrodynamic beam-plasma instability" Sov. Phys. Usp. 31 750–762 (1988)
BibTexBibNote ® (generic)BibNote ® (RIS) MedlineRefWorks
PT Journal Article
TI Physical mechanisms for the hydrodynamic beam-plasma instability
AU Kalmykova S S
FAU Kalmykova SS
AU Kurilko V I
FAU Kurilko VI
DP 10 Aug, 1988
TA Phys. Usp.
VI 31
IP 8
PG 750-762
RX 10.1070/PU1988v031n08ABEH004928
URL https://ufn.ru/en/articles/1988/8/d/
SO Phys. Usp. 1988 Aug 10;31(8):750-762

Оригинал: Калмыкова С С, Курилко В И «Физические механизмы гидродинамической плазменно-пучковой неустойчивости» УФН 155 681–701 (1988); DOI: 10.3367/UFNr.0155.198808f.0681

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