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Improved large diameter wire array implosions from increased wire array symmetry and on-axis mass participation

机译:通过增加线阵列对称性和轴上质量参与来改善大直径线阵列内爆

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Aluminum wire array, Z-pinch experiments have been performed on an 8 MA generator using arrays consisting of 24, 30, and 42 wires. These experiments were designed to scan through a region of (array mass, implosion velocity) space in which greater than 30% conversion of the implosion kinetic energy into K-shell x rays was predicted to occur [Thornhill et al., Phys. Plasmas 1, 321 (1994)]. Array masses between 120 and 2050 mu g/cm were used in these experiments. An analysis of the x-ray data taken using 24 wire arrays, shows a one-to-one correspondence between the observed kilo-electron-volt yields (5-64 kJ) and the fraction of initial array mass (0.3%-60%) that is radiating from the K shell. The 30 and 42 wire experiments demonstrated that tighter pinches with increased radiated powers were achieved with these larger wire number, improved symmetry arrays. In addition, increases in the implosion mass and array diameter in the 30 and 42 wire number cases resulted in increases in the radiated yield over the corresponding 24 wire shots, up to 88 kJ, which can be interpreted as due to improved coupling and thermalization of the kinetic energy. Moreover, spectroscopic analyses of the 30 and 42 wire experiments have shown that the increased wire numbers also resulted in K-shell radiating mass fractions of greater than 50%. (C) 1998 American Institute of Physics. [S1070-664X(98)03606-4] [References: 22]
机译:铝线阵列Z捏实验已在8 MA发生器上执行,使用的阵列包括24、30和42条线。设计这些实验以扫描(阵列质量,内爆速度)空间的区域,在该区域中预计发生内爆动能向K壳x射线的转化率大于30%[Thornhill等,Phys。 Plasmas 1,321(1994)]。在这些实验中使用的阵列质量在120和2050μg / cm之间。使用24线阵列获取的X射线数据分析显示,观测到的千电子伏特产量(5-64 kJ)与初始阵列质量分数(0.3%-60%)之间一一对应)是从K壳辐射出来的。 30和42根线的实验表明,使用这些更大的线数和改进的对称阵列,可以实现辐射功率增加的更紧密的捏合。此外,在30和42根线数情况下,内爆质量和阵列直径的增加导致相应的24根线束射束的辐射成品率增加,最高可达88 kJ,这可以解释为是由于改进的耦合和热敏性所致。动能。此外,对30和42根导线实验的光谱分析表明,增加的导线数量也导致K壳辐射质量分数大于50%。 (C)1998美国物理研究所。 [S1070-664X(98)03606-4] [参考:22]

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