DocumentCode
3329079
Title
Plasma properties of radial foil explosions on the cornell beam research accelerator
Author
Gourdain, P.-A. ; Blesener, I.C. ; Gorenstein, A.Y. ; Greenly, J.B. ; Hammer, D.A. ; Kim, J.E. ; Knapp, P.F. ; Kusse, B.R. ; Pang, B.H. ; Pikuz, S.A. ; Schrafel, P.C. ; Shelkovenko, T.C.
Author_Institution
Cornell Univ., Ithaca, NY, USA
fYear
2010
fDate
20-24 June 2010
Firstpage
1
Lastpage
1
Abstract
Summary form only given. High energy density (HED) plasmas, produced by diverse techniques such as lasers or pulsed power generators, can help scientists in understanding extreme states of matter as well as astrophysical phenomena. Radial foil configurations are novel experiements which can yield plasma pressures on the order of 0.5 Mbar on a 1MA, 100 ns current rise time generator such as the COrnel Beam Research Accelerator (COBRA). In this experimental set-up, a thin metallic foil stretched on a circular anode connects to a very small "pin" cathode (1mm in diameter). Radial currents run through the foil then down the pin cathode, thereby generating an axi-symmetric toroidal magnetic field. These currents interact with the B field and the resulting J×B force lifts the foil upward. Very rapidly the plasma turns into a bubble shaped cavity, which expands swiftly (v~200-300 km/s), until instabilities destroy the axial symmetry, bursting the bubble open. As the cavity moves away from the cathode a dense central plasma column with electron densities above 1020 cm-3 forms. The background plasma created by current ablation focuses on the geometrical axis, forming a jet moving at a speed of 100 km/s. Its electron density is larger than 1019 cm-3. This jet is collimated by magnetic fields, which confines its mass during a large portion of the discharge.
Keywords
discharges (electric); explosions; plasma density; plasma instability; plasma jets; plasma magnetohydrodynamics; plasma pressure; plasma production; Cornell beam research accelerator; axisymmetric toroidal magnetic field; bubble shaped cavity; current 1 MA; current ablation; dense central plasma column; electron density; high energy density plasma production; plasma discharge; plasma instability; plasma jet; plasma pressure; pulsed power generator; radial foil explosion; rise time generator; size 1 mm; thin metallic foil; Acceleration; Cathodes; Explosions; Laser beams; Optical pulse generation; Particle beams; Plasma accelerators; Plasma density; Plasma properties; Toroidal magnetic fields;
fLanguage
English
Publisher
ieee
Conference_Titel
Plasma Science, 2010 Abstracts IEEE International Conference on
Conference_Location
Norfolk, VA
ISSN
0730-9244
Print_ISBN
978-1-4244-5474-7
Electronic_ISBN
0730-9244
Type
conf
DOI
10.1109/PLASMA.2010.5534002
Filename
5534002
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