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Conical Wire Array Z-Pinches as a Tool to Explore the Physics of Wire Array Z-Pinches and for Radiation Pulse-Shaping

机译:圆锥形线阵列Z型夹作为探索线阵列Z型夹物理和辐射脉冲整形的工具

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Summary form only given. We investigate the use of the conical wire array Z-pinch to test the understanding of wire array Z-pinches using the MAGPIE generator (1 MA, 240 ns). In contrast to previous experiments that have used the precursor plasma flows in a conical wire array to model proto-stellar jets, here we concentrate on the dynamics of the conical wire array. The variation in magnetic field and inter-wire gap along the wire make conical arrays apt for testing the understanding of wire ablation. Mass ablation at different axial positions agrees with a rocket model with a fixed ablation velocity, and hence the mass ablation rate is inversely proportional to radius. Modulations in wire ablation are observed similar to those in cylindrical wire arrays. The wavelength of these modulations is similar to those in cylindrical arrays, and is fixed along the length of the wire. Near the wire the ablated plasma streams display an un-expected curved trajectory towards the anode. The axial variation of global magnetic field also affects the implosion phase of conical wire arrays, with wire breakage occurring first at the smaller diameter, cathode end of the array. The X-ray pulse shape is different from cylindrical wire arrays, partially due to an axial variation in the implosion time. In experiments with a large wire inclination angle a current carrying bubble is formed at the base of the array which propagates upwards
机译:仅提供摘要表格。我们研究了使用圆锥形线阵列Z捏来测试使用MAGPIE发生器(1 MA,240 ns)对线阵列Z捏的理解。与以前的实验相比,前者使用圆锥形线阵列中的前体等离子体流来模拟原星喷射流,在此,我们将重点放在圆锥形线阵列的动力学上。磁场和沿导线的导线间间隙的变化使圆锥形阵列易于测试对导线烧蚀的理解。在不同轴向位置处的质量消融与具有固定消融速度的火箭模型一致,因此质量消融速率与半径成反比。观察到烧蚀中的调制类似于圆柱形线阵列中的调制。这些调制的波长类似于圆柱阵列中的波长,并且沿着导线的长度固定。在导线附近,烧蚀的等离子体流向阳极显示出意外的弯曲轨迹。全局磁场的轴向变化也影响圆锥形线阵列的内爆阶段,其中线断裂首先发生在较小直径的阵列阴极端。 X射线脉冲的形状不同于圆柱形线阵列,部分是由于内爆时间的轴向变化。在具有较大导线倾斜角的实验中,在阵列的底部形成了载流气泡,该载流气泡向上传播

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