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Investigation of regimes of wire array implosion on the 1 MA Zebra accelerator

机译:1 MA Zebra加速器上的线阵内爆机制研究

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Implosion of wire arrays was investigated at the 1 MA Zebra accelerator by multiframe laser probing and gated x-ray self-emission diagnostics. Different regimes of implosion were observed in Al and Cu wire arrays. Implosion of Al loads with masses of 33-37 mu g/cm produces a dense pinch 1-1.5 mm in diameter. Strong instabilities are observed in the Z pinch at the time of stagnation. Implosion of "overmassed" loads produces a plasma column 3-4 mm in diameter with a core. The plasma column does not collapse during the x-ray pulse. The core of the plasma column is not subjected to the kink instability and transforms to a chain of dense spots in the later stage. Different regimes of implosion were observed in Al 8x15 mu m loads presumably due to variations in the current pulse and load conditions. Observed regimes are compared to three-dimensional hybrid simulation of ideal and nonideal magnetohydrodynamics modes of implosion. (c) 2006 American Institute of Physics.
机译:通过多帧激光探测和门控X射线自发射诊断,在1 MA Zebra加速器上研究了线阵列的内爆。在铝和铜线阵列中观察到不同的内爆方式。质量为33-37μg/ cm的Al载荷的内爆会产生直径1-1.5 mm的致密收缩。停滞时在Z夹中观察到强烈的不稳定性。 “过大”载荷的内爆产生直径为3-4 mm的带核的等离子柱。在X射线脉冲期间,等离子体柱不会塌陷。等离子柱的核心不会发生扭折不稳定性,并在稍后阶段转变为密集点链。可能是由于电流脉冲和负载条件的变化,在Al 8x15μm负载中观察到了不同的内爆方式。将观察到的状态与理想内爆和非理想内爆磁流体动力学模式的三维混合仿真进行了比较。 (c)2006年美国物理研究所。

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