X-ray imaging measurements of capsule implosions driven by a Z-pinch dynamic hohlraum

The radiation and shock generated by impact of an annular tungsten Z-pinch plasma on a 10-mm diam 5-mg/cc CH(2) foam are diagnosed with x-ray imaging and power measurements. The radiative shock was virtually unaffected by Z-pinch plasma instabilities. The 5-ns-duration approximately 135-eV radiation...

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Veröffentlicht in:Physical review letters 2002-08, Vol.89 (9), p.095004-095004, Article 095004
Hauptverfasser: Bailey, J E, Chandler, G A, Slutz, S A, Bennett, G R, Cooper, G, Lash, J S, Lazier, S, Lemke, R, Nash, T J, Nielsen, D S, Moore, T C, Ruiz, C L, Schroen, D G, Smelser, R, Torres, J, Vesey, R A
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Sprache:eng
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Zusammenfassung:The radiation and shock generated by impact of an annular tungsten Z-pinch plasma on a 10-mm diam 5-mg/cc CH(2) foam are diagnosed with x-ray imaging and power measurements. The radiative shock was virtually unaffected by Z-pinch plasma instabilities. The 5-ns-duration approximately 135-eV radiation field imploded a 2.1-mm-diam CH capsule. The measured radiation temperature, shock radius, and capsule radius agreed well with computer simulations, indicating understanding of the main features of a Z-pinch dynamic-hohlraum-driven capsule implosion.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.89.095004