Study of a Stationary Breakdown Wave Under the Conditions of Noticeable Reflection of the Incident Electromagnetic Wave from a Gas-Discharge Plasma

We model numerically propagation of a stationary ionization wave oppositely to an incident plane electromagnetic wave within the frameworks of the simplest model which allows for gas ionization by an electron impact, attachment of electrons to neutral molecules, and plasma diffusion. The calculation...

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Veröffentlicht in:Radiophysics and quantum electronics 2015-10, Vol.58 (5), p.327-338
Hauptverfasser: Semenov, V. E., Rakova, E. I., Glyavin, M. Yu, Nusinovich, G. S.
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container_end_page 338
container_issue 5
container_start_page 327
container_title Radiophysics and quantum electronics
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creator Semenov, V. E.
Rakova, E. I.
Glyavin, M. Yu
Nusinovich, G. S.
description We model numerically propagation of a stationary ionization wave oppositely to an incident plane electromagnetic wave within the frameworks of the simplest model which allows for gas ionization by an electron impact, attachment of electrons to neutral molecules, and plasma diffusion. The calculations are performed within the approximation of the self-consistent field allowing for the reflection of the electromagnetic wave from the plasma. The characteristics of ionization waves are found in a wide range of such parameters as the gas type, gas pressure, and frequency and amplitude of the incident electromagnetic wave.
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subjects Analysis
Approximation
Astronomy
Astrophysics and Astroparticles
Electric waves
Electromagnetic radiation
Electromagnetic waves
Electromagnetism
Electron impact
Gas ionization
Hadrons
Heavy Ions
Ionization of gases
Ionization waves
Lasers
Mathematical and Computational Physics
Mathematical models
Nuclear Physics
Observations and Techniques
Optical Devices
Optics
Photonics
Physics
Physics and Astronomy
Plasma physics
Quantum Optics
Reflection
Theoretical
Wave propagation
title Study of a Stationary Breakdown Wave Under the Conditions of Noticeable Reflection of the Incident Electromagnetic Wave from a Gas-Discharge Plasma
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