DocumentCode
2652196
Title
Magnetic field measurements in wirearray Z-pinches
Author
Syed, Wasif ; Hammer, David A. ; Lipson, Michal
Author_Institution
Lab. of Plasma Studies, Cornell Univ., Ithaca, NY
fYear
2006
fDate
4-8 June 2006
Firstpage
448
Lastpage
448
Abstract
Summary form only given. Understanding the evolution of the magnetic field topology and magnitude in the high energy density plasmas produced by wire-array Z-pinches is of critical importance for their ultimate application to stockpile stewardship and inertial confinement fusion. A method to determine the magnetic field profile in megampere level wire-array Z-pinches with high spatial and temporal resolution has not yet been developed. An ideal method would be passive and non-perturbing, such as Faraday rotation of laser light or emission spectroscopy. However, Faraday rotation measurements in Z-pinches suffer from severe practical difficulties, including, for example, the fact that there are large density gradients and the plasma appears to develop magnetohydrodynamic turbulence. A technique to measure the magnetic field in high energy density plasmas using magnetic (CoPt) thin films has already been developed. However this technique had insufficient time resolution. Therefore, we are developing a method based on Faraday rotation through a sensing waveguide placed in the vicinity of, and eventually in, a wire-array Z-pinch. We present preliminary theoretical and experimental results. Our ideal device is a "thin film waveguide" coupled to an optical fiber system. While these sensing devices may not survive for long in a dense Z-pinch, they may provide useful information for a significant fraction of the current pulse
Keywords
Faraday effect; Z pinch; plasma density; plasma diagnostics; plasma magnetohydrodynamics; plasma turbulence; Faraday rotation; current pulse; density gradients; emission spectroscopy; high energy density plasmas; inertial confinement fusion; laser light spectroscopy; magnetic field measurements; magnetic thin films; magnetohydrodynamic turbulence; optical fiber system; stockpile stewardship; thin film waveguide; wire-array Z-pinches; Density measurement; Energy resolution; Magnetic field measurement; Optical waveguide theory; Optical waveguides; Plasma applications; Plasma density; Plasma measurements; Plasma waves; Topology;
fLanguage
English
Publisher
ieee
Conference_Titel
Plasma Science, 2006. ICOPS 2006. IEEE Conference Record - Abstracts. The 33rd IEEE International Conference on
Conference_Location
Traverse City, MI
Print_ISBN
1-4244-0125-9
Type
conf
DOI
10.1109/PLASMA.2006.1707321
Filename
1707321
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