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- W2009832306 abstract "An experimental study has been made of the peak compression phase of the linear (Z) pinch in argon as a spectroscopic source. The initial pressure of argon was varied from 0.05 to 1 Torr and the condenser bank energy from 0.12 to 3.1 kJ. Over this range of conditions measurements of the plasma refractive index yielded quantitative values of electron density in the range 1016−2×1018 cm−3. The electron temperature was found to be between 2 and 3 eV. It was found that complete local thermal equilibrium could not be attained with low energy inputs, irrespective of the initial filling pressure, but that for a bank energy ≳2 kJ local thermal equilibrium should be a good approximation. At high pressures the pinching of the discharge was found to be inhibited so that the axial electron density peaked at some critical pressure. A model based on current penetration into the shock piston region was able to explain the behavior of the observed radial distribution of electron density at different pressures as well as the scaling properties of the critical pressure. Other measurements pertaining to this phenomenon are also examined. Finally, it was found that a large degree of shock-piston separation occurred at high filling pressures but not at low pressures contrary to the “skin depth criterion.”" @default.
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- W2009832306 date "1972-01-01" @default.
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- W2009832306 title "The Z Pinch as a Spectroscopic Source and the Influence of Shock-Piston Separation" @default.
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- W2009832306 doi "https://doi.org/10.1063/1.1693738" @default.
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