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Knowledge of the magnetic field distribution in a z-pinch plasma is of high importance since the plasma-field interaction plays a key role in determining the characteristics of the stagnation process and the efficiency of the magnetic-energy coupling to the plasma. However, plasma conditions that are typical of high-energy-density systems often render the common Zeeman-splitting magnetic field diagnostic...
The effects of an axial magnetic field on the development of instabilities during a z-pinch implosion are studied using 2-D images and interferometry. The measurements clearly show mitigation of magneto Rayleigh-Taylor instabilities with increased magnitude of the preembedded axial magnetic field. Introducing the axial magnetic field also gives rise to new structures, indicating an interaction between...
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