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Tungsten Ions in Plasmas: Statistical Theory of Radiative-Collisional Processes
- Source :
- Atoms, Vol 3, Iss 2, Pp 162-181 (2015), Atoms, Volume 3, Issue 2, Pages 162-181
- Publication Year :
- 2015
- Publisher :
- MDPI AG, 2015.
-
Abstract
- The statistical model for calculations of the collisional-radiative processes in plasmas with tungsten impurity was developed. The electron structure of tungsten multielectron ions is considered in terms of both the Thomas-Fermi model and the Brandt-Lundquist model of collective oscillations of atomic electron density. The excitation or ionization of atomic electrons by plasma electron impacts are represented as photo-processes under the action of flux of equivalent photons introduced by E. Fermi. The total electron impact single ionization cross-sections of ions Wk+ with respective rates have been calculated and compared with the available experimental and modeling data (e.g., CADW). Plasma radiative losses on tungsten impurity were also calculated in a wide range of electron temperatures 1 eV–20 keV. The numerical code TFATOM was developed for calculations of radiative-collisional processes involving tungsten ions. The needed computational resources for TFATOM code are orders of magnitudes less than for the other conventional numerical codes. The transition from corona to Boltzmann limit was investigated in detail. The results of statistical approach have been tested by comparison with the vast experimental and conventional code data for a set of ions Wk+. It is shown that the universal statistical model accuracy for the ionization cross-sections and radiation losses is within the data scattering of significantly more complex quantum numerical codes, using different approximations for the calculation of atomic structure and the electronic cross-sections.
- Subjects :
- Physics
equivalent photon flux
Nuclear and High Energy Physics
Electron density
tungsten
Thomas-Fermi model
ionization cross-sections
chemistry.chemical_element
radiation losses
Electron
Tungsten
corona limit
Condensed Matter Physics
Plasma oscillation
Atomic and Molecular Physics, and Optics
Ion
chemistry
Ionization
Radiative transfer
plasma oscillations
lcsh:QC770-798
lcsh:Nuclear and particle physics. Atomic energy. Radioactivity
Atomic physics
Electron ionization
plasma
Subjects
Details
- Language :
- English
- ISSN :
- 22182004
- Volume :
- 3
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Atoms
- Accession number :
- edsair.doi.dedup.....da1e842073e22342776adbee0900bfff