Rotating plasma disks in dense Z-pinch experiments

We present data from the first z-pinch experiments aiming to simulate aspects of accretion disk physics in the laboratory. Using off axis ablation flows from a wire array z-pinch we demonstrate the formation of a hollow disk structure that rotates at 60 kms−1 for 150 ns. By analysing the Thomson sca...

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Hauptverfasser: Bennett, M J, Lebedev, S V, Hall, G N, Suttle, L, Burdiak, G, Suzuki-Vidal, F, Hare, J, Swadling, G, Patankar, S, Bocchi, M, Chittenden, J P, Smith, R, Frank, A, Blackman, E, Drake, R P, Ciardi, A
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:We present data from the first z-pinch experiments aiming to simulate aspects of accretion disk physics in the laboratory. Using off axis ablation flows from a wire array z-pinch we demonstrate the formation of a hollow disk structure that rotates at 60 kms−1 for 150 ns. By analysing the Thomson scattered spectrum we make estimates for the ion and electron temperatures as Ti ∼ 60 eV and ZTe ∼ 150 to 200 eV.
ISSN:0094-243X
1551-7616
DOI:10.1063/1.4904780