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Resistive Interchange Modes in Reversed-Field Pinches

机译:反向场箍中的电阻互换模式

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A new regime is found in which the growth rate of the resistive interchange mode in cylindrical geometry is considerably smaller than previously believed. This stabilization is due to coupling to the external, tearing stable, region. Considering the crossover point from the conventional resistive interchange to the new regime as a critical beta, beta /sub c/, we find beta /sub c/ approx. 7% for classical resistivity with T/sub e/ = 10 eV, in agreement with recent numerical studies. However, beta /sub c/ scales as T/sub e//sup -3/5/, giving beta /sub c/ approx. 1% for T/sub e/ = 1 keV. Marginally stable pressure profiles for totally localized modes in the Bessel function model for a reversed field pinch are also computed, and show that the central pressure may be up to 400 times the pressure at the wall.

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