Structural evolution and formation of high-pressure plasmas in X pinches

Two- and three-dimensional MHD simulations are used to provide a theoretical description of 2 wire molybdenum X-pinch experiments. The initial evolution from solid wires to the formation of supersonic jets and a central micro-Z pinch is found to result from the slow rate of wire ablation and from th...

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Veröffentlicht in:Physical review letters 2007-01, Vol.98 (2), p.025003-025003, Article 025003
Hauptverfasser: Chittenden, J P, Ciardi, A, Jennings, C A, Lebedev, S V, Hammer, D A, Pikuz, S A, Shelkovenko, T A
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Sprache:eng
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Zusammenfassung:Two- and three-dimensional MHD simulations are used to provide a theoretical description of 2 wire molybdenum X-pinch experiments. The initial evolution from solid wires to the formation of supersonic jets and a central micro-Z pinch is found to result from the slow rate of wire ablation and from the distribution of the Lorentz force. The growth of m=0 instabilities triggers the formation of micron sized regions of intense x-ray emission with plasma pressures in the Gbar range. A simple analytical model is used to predict how the maximum density and temperature scale with material and current.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.98.025003