4.4 Article

Dynamics of conical wire array Z-pinch implosions

Journal

PHYSICS OF PLASMAS
Volume 14, Issue 10, Pages -

Publisher

AIP Publishing
DOI: 10.1063/1.2795129

Keywords

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Funding

  1. EPSRC [EP/E053661/1] Funding Source: UKRI
  2. Engineering and Physical Sciences Research Council [EP/E053661/1] Funding Source: researchfish

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A modification of the wire array Z pinch, the conical wire array, has applications to the understanding of wire array implosions and potentially to pulse shaping relevant to inertial confinement fusion. Results are presented from imploding conical wire array experiments performed on university scale 1 MA generators-the MAGPIE generator (1 MA, 240 ns) at Imperial College London [I. H. Mitchell , Rev. Sci Instrum. 67, 1533 (1996)] and the Nevada Terawatt Facility's Zebra generator (1 MA, 100 ns) at the University of Nevada, Reno [B. Bauer , in Dense Z-Pinches, edited by N. Pereira, J. Davis, and P. Pulsifer (AIP, New York, 1997), Vol. 409, p. 153]. This paper will discuss the implosion dynamics of conical wire arrays. Data indicate that mass ablation from the wires in this complex system can be reproduced with a rocket model with fixed ablation velocity. Modulations in the ablated plasma are present, the wavelength of which is invariant to a threefold variation in magnetic field strength. The axial variation in the array leads to a zippered precursor column formation. An initial implosion of a magnetic bubble near the cathode is followed by the implosion zippering upwards. Spectroscopic data demonstrating a variation of plasma parameters (e.g., electron temperature) along the Z-pinch axis is discussed, and experimental data are compared to magnetohydrodynamic simulations. (C) 2007 American Institute of Physics.

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