Calculation of The Electrons Distribution Function For Mercury - Argon Mixture

The electron energy distribution in mercury-argon mixture discharge calculated numerically from the Boltzmann equation. In this job The mixture parameters such as drift velocity, excitation rates and ionization coefficient are calculated which are plotted as a function of the E/N. Values of the rati...

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Main Authors: Ibrahim Faiadh, F. Rasheed, Hamid Mahood
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2005-08-01
Series:Engineering and Technology Journal
Online Access:https://etj.uotechnology.edu.iq/article_181521_652c890b7b77557181cd59ce23123a28.pdf
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author Ibrahim Faiadh
F. Rasheed
Hamid Mahood
author_facet Ibrahim Faiadh
F. Rasheed
Hamid Mahood
author_sort Ibrahim Faiadh
collection DOAJ
description The electron energy distribution in mercury-argon mixture discharge calculated numerically from the Boltzmann equation. In this job The mixture parameters such as drift velocity, excitation rates and ionization coefficient are calculated which are plotted as a function of the E/N. Values of the ratio of the electric field, E to the gas number density, N of interest in this work are in the range from 10 to 10 V. cm². The results show a good agreement with available experimental and theoretical data. The present results are relevant for the modeling of discharges in argon which its atoms play a major role in the kinetics of various lasers.
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spelling doaj.art-93e4401396c0433790097d4dbb9b29e12024-02-04T17:55:37ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582005-08-01248999101210.30684/etj.24.8A.8181521Calculation of The Electrons Distribution Function For Mercury - Argon MixtureIbrahim FaiadhF. RasheedHamid MahoodThe electron energy distribution in mercury-argon mixture discharge calculated numerically from the Boltzmann equation. In this job The mixture parameters such as drift velocity, excitation rates and ionization coefficient are calculated which are plotted as a function of the E/N. Values of the ratio of the electric field, E to the gas number density, N of interest in this work are in the range from 10 to 10 V. cm². The results show a good agreement with available experimental and theoretical data. The present results are relevant for the modeling of discharges in argon which its atoms play a major role in the kinetics of various lasers.https://etj.uotechnology.edu.iq/article_181521_652c890b7b77557181cd59ce23123a28.pdf
spellingShingle Ibrahim Faiadh
F. Rasheed
Hamid Mahood
Calculation of The Electrons Distribution Function For Mercury - Argon Mixture
Engineering and Technology Journal
title Calculation of The Electrons Distribution Function For Mercury - Argon Mixture
title_full Calculation of The Electrons Distribution Function For Mercury - Argon Mixture
title_fullStr Calculation of The Electrons Distribution Function For Mercury - Argon Mixture
title_full_unstemmed Calculation of The Electrons Distribution Function For Mercury - Argon Mixture
title_short Calculation of The Electrons Distribution Function For Mercury - Argon Mixture
title_sort calculation of the electrons distribution function for mercury argon mixture
url https://etj.uotechnology.edu.iq/article_181521_652c890b7b77557181cd59ce23123a28.pdf
work_keys_str_mv AT ibrahimfaiadh calculationoftheelectronsdistributionfunctionformercuryargonmixture
AT frasheed calculationoftheelectronsdistributionfunctionformercuryargonmixture
AT hamidmahood calculationoftheelectronsdistributionfunctionformercuryargonmixture