About: Optical diagnostics of a surface-wave-sustained neon plasma by collisional-radiative modelling and a self-absorption method     Goto   Sponge   NotDistinct   Permalink

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  • A surface-wave-sustained microwave discharge in a coaxial tube configuration in neon at low pressure (300-700 Pa) was studied by optical emission spectroscopy. Spectra of the discharge were analysed by a self-absorption method and a collisional-radiative model. The self-absorption method was used to determine the densities of neon metastable states. The collisional-radiative model, using these densities, was applied to determine the axially resolved electron temperature and the reduced electric field strength in the discharge from the optical spectra. Two types of electron distribution functions were used in the calculations-a Maxwellian distribution function and a solution of electron Boltzmann kinetic equation. The spatially averaged neon metastable densities were in the range (0.12-0.53) x 10(16) m(-3) and (3.4-4.1) x 10(16) m(-3) for 1s(3) and 1s(5) states, respectively. The axial profile of the electron temperature was found to be approximately constant around 1.3-1.
  • A surface-wave-sustained microwave discharge in a coaxial tube configuration in neon at low pressure (300-700 Pa) was studied by optical emission spectroscopy. Spectra of the discharge were analysed by a self-absorption method and a collisional-radiative model. The self-absorption method was used to determine the densities of neon metastable states. The collisional-radiative model, using these densities, was applied to determine the axially resolved electron temperature and the reduced electric field strength in the discharge from the optical spectra. Two types of electron distribution functions were used in the calculations-a Maxwellian distribution function and a solution of electron Boltzmann kinetic equation. The spatially averaged neon metastable densities were in the range (0.12-0.53) x 10(16) m(-3) and (3.4-4.1) x 10(16) m(-3) for 1s(3) and 1s(5) states, respectively. The axial profile of the electron temperature was found to be approximately constant around 1.3-1. (en)
Title
  • Optical diagnostics of a surface-wave-sustained neon plasma by collisional-radiative modelling and a self-absorption method
  • Optical diagnostics of a surface-wave-sustained neon plasma by collisional-radiative modelling and a self-absorption method (en)
skos:prefLabel
  • Optical diagnostics of a surface-wave-sustained neon plasma by collisional-radiative modelling and a self-absorption method
  • Optical diagnostics of a surface-wave-sustained neon plasma by collisional-radiative modelling and a self-absorption method (en)
skos:notation
  • RIV/00216224:14310/13:00066305!RIV14-MSM-14310___
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  • I, P(GAP205/10/1374), P(GD104/09/H080), S
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  • 29
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  • 94220
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  • RIV/00216224:14310/13:00066305
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  • optical emission spectroscopy; surface-wave plasma; neon; collisional-radiative modelling; self-absorption (en)
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  • GB - Spojené království Velké Británie a Severního Irska
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  • [E33D9006D9D6]
http://linked.open...i/riv/nazevZdroje
  • Journal of physics D: Applied physics
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  • 46
http://linked.open...iv/tvurceVysledku
  • Bogdanov, Todor
  • Dosoudilová, Lenka
  • Hnilica, Jaroslav
  • Navrátil, Zdeněk
http://linked.open...ain/vavai/riv/wos
  • 000321333600008
issn
  • 0022-3727
number of pages
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  • 10.1088/0022-3727/46/29/295204
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  • 14310
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