Experimental Results from SHIVA Star Vacuum Inductive Store/Plasma Flow Switch Drven Implosions

Using a 1313-μF, 3-nH, 120-kV, 9.4-MJ SHIVA Star capacitor bank, we have performed vacuum inductive store/plasma flow switch (PFS) driven implosions of low mass (200-400 μg/cm2) cylindrical foil liners of 2-cm height and 5-cm radius. This technique employs a coaxial discharge through a plasma armatu...

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Veröffentlicht in:IEEE transactions on plasma science 1987-12, Vol.15 (6), p.760-765
Hauptverfasser: Degnan, J. H., Baker, W. L., Hackett, K. E., Hall, D. J., Holmes, J. L., Kriebel, J. B., Price, D. W., Reinovsky, R. E., Graham, J. D., Lopez, E. A., Alme, M. L., Bird, G., Boyer, C. N., Coffey, S. K., Conte, D., Davis, J. F., Seiler, S. W., Turchi, P. J.
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Sprache:eng
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Zusammenfassung:Using a 1313-μF, 3-nH, 120-kV, 9.4-MJ SHIVA Star capacitor bank, we have performed vacuum inductive store/plasma flow switch (PFS) driven implosions of low mass (200-400 μg/cm2) cylindrical foil liners of 2-cm height and 5-cm radius. This technique employs a coaxial discharge through a plasma armature, which stores magnetic energy over 3-4 μs and rapidly switches it to an imploding load as the plasma armature exits the coaxial gun muzzle. The current transferred to the load by the PFS has a rise time of less than 0.2 μs. With 5-MJ stored energy, we have driven fast liner implosions with a current of over 9 MA, obtaining an isotropic equivalent 2.7-TW 0.5-MJ X-ray yield.
ISSN:0093-3813
1939-9375
DOI:10.1109/TPS.1987.4316788