Modeling of cathode sputtering in a low-current gas discharge in a mixture of argon with mercury vapor
- Autores: Kristya V.I.1, Savichkin D.O.1, Fisher M.R.1
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Afiliações:
- Bauman Moscow State Technical University, Kaluga Branch
- Edição: Volume 10, Nº 2 (2016)
- Páginas: 441-444
- Seção: Article
- URL: https://journals.rcsi.science/1027-4510/article/view/188685
- DOI: https://doi.org/10.1134/S1027451016020300
- ID: 188685
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Resumo
The energy spectra of ion fluxes bombarding the surface of the cathode are calculated for the case of low-current discharge in an argon–mercury mixture, in which the mercury density is several orders of magnitude lower than the argon density and depends on temperature. The effective rates of tungsten-cathode sputtering by ions of both mixture components and the flux densities of cathode-material atoms sputtered by them are found as functions of the reduced electric-field strength in the discharge gap. It is shown that, at a low mercury content in the mixture, the intensities of cathode sputtering by mercury and argon ions can be comparable in magnitude.
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Sobre autores
V. Kristya
Bauman Moscow State Technical University, Kaluga Branch
Autor responsável pela correspondência
Email: kristya@bmstu-kaluga.ru
Rússia, Kaluga, 248000
D. Savichkin
Bauman Moscow State Technical University, Kaluga Branch
Email: kristya@bmstu-kaluga.ru
Rússia, Kaluga, 248000
M. Fisher
Bauman Moscow State Technical University, Kaluga Branch
Email: kristya@bmstu-kaluga.ru
Rússia, Kaluga, 248000
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