Scaling of a fast spherical discharge
- Authors: Antsiferov P.S.1,2, Dorokhin L.A.1
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Affiliations:
- Institute of Spectroscopy
- Moscow Institute of Physics and Technology
- Issue: Vol 43, No 2 (2017)
- Pages: 164-169
- Section: Plasma Dynamics
- URL: https://journals.rcsi.science/1063-780X/article/view/186437
- DOI: https://doi.org/10.1134/S1063780X17020015
- ID: 186437
Cite item
Abstract
The influence of the discharge cavity dimensions on the properties of the spherical plasma formed in a fast discharge was studied experimentally. The passage of a current pulse with an amplitude of 30–40 kA and a rise rate of ~1012 A/s (a fast discharge) through a spherical ceramic (Al2O3) cavity with an inner diameter of 11 mm filled with argon at a pressure of 80 Pa results in the formation of a 1- to 2-mm-diameter spherical plasma with an electron temperature of several tens of electronvolts and a density of 1018–1019 cm–3. It is shown that an increase in the inner diameter of the discharge cavity from 11 to 21 mm leads to the fourfold increase in the formation time of the spherical plasma and a decrease in the average ion charge. A decrease in the cavity diameter to 7 mm makes the spherical plasma unstable.
About the authors
P. S. Antsiferov
Institute of Spectroscopy; Moscow Institute of Physics and Technology
Author for correspondence.
Email: Ants@isan.troitsk.ru
Russian Federation, Troitsk, Moscow, 142190; Dolgoprudnyi, Moscow oblast, 141700
L. A. Dorokhin
Institute of Spectroscopy
Email: Ants@isan.troitsk.ru
Russian Federation, Troitsk, Moscow, 142190
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