Title :
Stabilization of gas puff Z-pinch implosions by using external Bz field on COBRA
Author :
Qi, N. ; DeGrouchy, P. ; Schrafel, P.C. ; Atoyan, L. ; Potter, W.M. ; Cahill, A.D. ; Gourdain, P.-A. ; Greenly, J.B. ; Hammer, D.A. ; Hoyt, C.L. ; Kusse, B.R. ; Pikuz, S.A. ; Shelkovenko, T.A.
Author_Institution :
Lab. of Plasma Studies, Cornell Univ., Ithaca, NY, USA
Abstract :
Summary form only given. We present investigations of gas puff Z-pinch implosions with an applied external Bz field. The experiments are conducted on the 1-MA, 200-ns COBRA generator. Stabilized 200-ns, high current z-pinch implosions have been demonstrated by using double or triple-gas puffs. In the experiments, a triple-nozzle is used to produce z-pinch loads with concentric outer, inner and center gas puff columns. Implosion dynamics are studied for triple- or double-(without inner puff) gas puffs with or without an external Bz field. In these multi-nozzle gas puff z-pinches, a heavier inner gas puff decelerated the implosing plasma resulting in stabilization of the Magnetic Rayleigh-Taylor (MRT) instability. More unstable implosions were observed with a lighter inner gas puff. Application of a several kG external axial Bz field produce magnetic shear, which also mitigate the MRT instabilities. We use a three-frame Laser Shearing Interferometer (LSI) and a two-frame Laser Wavefront Analyzer (LWA) to measure the plasma density profiles and an 8-frame 2-ns gated EUV camera to image the imploding plasma. From measurements, the structures of the imploding plasma sheath and MRT instability are determined. Details will be presented in the report.
Keywords :
Rayleigh-Taylor instability; Z pinch; explosions; light interferometry; plasma density; plasma diagnostics; plasma sheaths; 8-frame gated EUV camera; COBRA generator; concentric gas puff columns; current 1 MA; double-gas puff; external axial Bz field; gas puff z-pinch implosion stabilization; imploding plasma sheath structures; magnetic Rayleigh-Taylor instability; magnetic shear; multinozzle gas puff z-pinches; plasma density profiles; stabilized high current z-pinch implosions; three-frame laser shearing interferometer; time 2 ns; time 200 ns; triple-gas puff; triple-nozzle; two-frame laser wavefront analyzer; z-pinch loads; Gas lasers; Laser applications; Magnetic field measurement; Magnetic resonance imaging; Measurement by laser beam; Plasma measurements; Plasmas;
Conference_Titel :
Plasma Sciences (ICOPS) held with 2014 IEEE International Conference on High-Power Particle Beams (BEAMS), 2014 IEEE 41st International Conference on
Conference_Location :
Washington, DC
Print_ISBN :
978-1-4799-2711-1
DOI :
10.1109/PLASMA.2014.7012268