DocumentCode
23697
Title
Mass-Energy Analysis of Ions Generated in the Anode Plasma of a High-Current Vacuum Spark
Author
Popov, S.A. ; Proskurovsky, D.I. ; Batrakov, A.V.
Author_Institution
Institute of High-Current Electronics, Siberian Branch, Russian Academy of Sciences, Tomsk, Russia
Volume
41
Issue
8
fYear
2013
fDate
Aug. 2013
Firstpage
2097
Lastpage
2106
Abstract
This paper presents research results on the ion charge state and energy distribution in the anode plasma generated at the spark stage of a high-current vacuum discharge. The cathode and the anode are both made of liquid metal Ga–In alloy. The use of a circuit with a relatively low impedance (6
) and a small interelectrode gap
made it possible to obtain a relatively high discharge current
at an initial voltage of 10–15 kV. Therefore, an electron beam consisting of a train of pulses with a duration of 5 ns and power density of
is formed in
, giving rise to high-density anode ablation plasma. The parameters of the ion component of this plasma are investigated with a mass energy analyzer. It is found that ions with
are present in the plasma, and the ion energy increases roughly in proportion with increasing ion charge. Increasing the initial voltage causes an increase in the fraction of highly charged ions and in their energy. The absolute values of the ion energy reach
. Two mechanisms of ion acceleration are discussed: adiabatic expansion of the anode plasma and ion acceleration by an ambipolar electric field. It is shown that the regularities found in this paper can be explained only with resort to both mechanisms.
Keywords
Anodes; Discharges (electric); Ion accelerators; Ionization; Anode spot; high-current vacuum spark; ion charge state distribution; ion energy distribution;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2013.2269735
Filename
6553159
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