Source of a Mega-Ampere Current with ~100-ns Time of Rise Based on an Explosive Magnetic Generator

To achieve the thermonuclear-ignition threshold in the scheme of indirect X -ray irradiation of the Z -pinch, it is necessary to implode the liner by a current with an amplitude of ~65 МА within a time of ~100 ns. Currents with such parameters can be generated using super-power disk-type explosive m...

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Veröffentlicht in:Doklady. a journal of the Russian Academy of Sciences. Physics 2019-12, Vol.64 (12), p.443-445
Hauptverfasser: Bazanov, A. A., Bochkov, E. I., Garanin, S. G., Duday, P. V., Zimenkov, A. A., Ivanovskiy, A. V., Klimushkin, K. N., Komarov, V. M., Krayev, A. I., Kudel’kin, V. B., Mamyshev, V. I., Polyushko, S. M., Tsibikov, Z. S., Shapovalov, E. V.
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Sprache:eng
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Zusammenfassung:To achieve the thermonuclear-ignition threshold in the scheme of indirect X -ray irradiation of the Z -pinch, it is necessary to implode the liner by a current with an amplitude of ~65 МА within a time of ~100 ns. Currents with such parameters can be generated using super-power disk-type explosive magnetic generators and a two-stage current pulse-sharpening system based on foil, electrically exploded, “serpentine”-shaped current opening switches. It is reasonable to implement the explosive current source with a rise time of ~100 ns in stages by increasing the current magnitude. The results of the first-stage experiments in which a current with an amplitude of 5 MA is used in an inductive load of ~10 nH with a time of ~120 ns on the basis of the helical explosive magnetic generator are given.
ISSN:1028-3358
1562-6903
DOI:10.1134/S1028335819120012