The Influence of Phase Mixing on the Rate of Relativistic-Electron-Beam Head Erosion during Beam Transport in a Scattering Gas-Plasma Medium

Research output

Abstract

The influence of the phase mixing of relativistic-electron-beam (REB) particle orbits on the beam-head erosion rate during the beam transport in a scattering gas-plasma medium is investigated using the analytical theory. It is shown that the phase mixing results in a reduction of the head erosion rate.

Original languageEnglish
Pages (from-to)553-556
Number of pages4
JournalJournal of Communications Technology and Electronics
Volume45
Issue number5
Publication statusPublished - 1 May 2000

Fingerprint

Plasma Gases
relativistic electron beams
erosion
Erosion
Electron beams
Scattering
Plasmas
Gases
scattering
gases
Orbits
orbits

Scopus subject areas

  • Computer Networks and Communications
  • Electrical and Electronic Engineering

Cite this

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title = "The Influence of Phase Mixing on the Rate of Relativistic-Electron-Beam Head Erosion during Beam Transport in a Scattering Gas-Plasma Medium",
abstract = "The influence of the phase mixing of relativistic-electron-beam (REB) particle orbits on the beam-head erosion rate during the beam transport in a scattering gas-plasma medium is investigated using the analytical theory. It is shown that the phase mixing results in a reduction of the head erosion rate.",
author = "Kolesnikov, {E. K.} and Manuilov, {A. S.}",
year = "2000",
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AU - Manuilov, A. S.

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Y1 - 2000/5/1

N2 - The influence of the phase mixing of relativistic-electron-beam (REB) particle orbits on the beam-head erosion rate during the beam transport in a scattering gas-plasma medium is investigated using the analytical theory. It is shown that the phase mixing results in a reduction of the head erosion rate.

AB - The influence of the phase mixing of relativistic-electron-beam (REB) particle orbits on the beam-head erosion rate during the beam transport in a scattering gas-plasma medium is investigated using the analytical theory. It is shown that the phase mixing results in a reduction of the head erosion rate.

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