Determination of the wave number of an electromagnetic wave propagating in high-frequency jet discharge plasma

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3 Citations (Scopus)

Abstract

The measurements of the amplitude-phase characteristics of the electromagnetic field in a high-frequency jet discharge burning in air and argon have been performed. Experimentally obtained radial distributions of the radial component of the electric field gave the base to determine the value of the wave number of an electromagnetic wave which propagates in the HF jet discharge plasma. The axial distribution of the radial component of the electric field has been calculated from the model of a jet discharge channel formed as a finite-length electric line.

Original languageEnglish
Pages (from-to)131-134
Number of pages4
JournalThermophysics and Aeromechanics
Volume13
Issue number1
DOIs
Publication statusPublished - Jan 2006

Fingerprint

plasma jets
electromagnetic radiation
electric fields
radial distribution
electromagnetic fields
argon
air

ASJC Scopus subject areas

  • Nuclear and High Energy Physics
  • Radiation

Cite this

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abstract = "The measurements of the amplitude-phase characteristics of the electromagnetic field in a high-frequency jet discharge burning in air and argon have been performed. Experimentally obtained radial distributions of the radial component of the electric field gave the base to determine the value of the wave number of an electromagnetic wave which propagates in the HF jet discharge plasma. The axial distribution of the radial component of the electric field has been calculated from the model of a jet discharge channel formed as a finite-length electric line.",
author = "Vlasov, {Victor Alexeevich} and Tikhomirov, {I. A.} and Lutsenko, {Yu Yu}",
year = "2006",
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AU - Tikhomirov, I. A.

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AB - The measurements of the amplitude-phase characteristics of the electromagnetic field in a high-frequency jet discharge burning in air and argon have been performed. Experimentally obtained radial distributions of the radial component of the electric field gave the base to determine the value of the wave number of an electromagnetic wave which propagates in the HF jet discharge plasma. The axial distribution of the radial component of the electric field has been calculated from the model of a jet discharge channel formed as a finite-length electric line.

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