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KIAM Preprint № 57, Moscow, 2022
Authors: Novikov A.A., Kim D.A., Vichev I.Y., Solomyannaya A.D., Grushin A.S., Iartsev B.L.
Numerical study of radiating xenon plasma
Abstract:
In this paper numerical simulation of the spectral properties of xenon plasma is carried out for various parameters (temperature, density, pressure) within the framework of the Saha-Boltzmann approximation. For calculations, pre-prepared atomic databases with varying degrees of detail of ion states were used. The effect of ionization potential depression was taken into account. The spectral absorption coefficients and emissivity, as well as the spectral radiation energy flux for a homogeneous plasma in a spherically symmetric geometry, were obtained. The identification of strong spectral lines in the wavelength ranges of interest has been carried out.
Keywords:
xenon plasma, radiation spectrum, Saha-Boltzmann approximation, ionization potential depression, numerical simulation
Publication language: russian,  pages: 15
Research direction:
Mathematical modelling in actual problems of science and technics
Russian source text:
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About authors:
  • Novikov Andrey Alekseevich,  orcid.org/0000-0002-1065-1689Moscow Engineering Physics Institute
  • Kim Dmitrii Andreevich,  orcid.org/0000-0001-9394-9810KIAM RAS
  • Vichev Ilia Yurievich,  orcid.org/0000-0003-4613-6301KIAM RAS
  • Solomyannaya Anna Dmitrievna,  orcid.org/0000-0003-4767-9017KIAM RAS
  • Grushin Alexander Sergeevich,  orcid.org/0000-0003-0106-6098KIAM RAS
  • Iartsev Boris Leonidovich,  orcid.org/0000-0001-6715-9890KIAM RAS