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Z pinches as intense X-ray sources for inertial confinement fusion applications

机译:Z夹住强烈X射线源用于惯性约束聚变应用

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Fast z-pinch implosions can convert more than 10 of the stored electrical energy in a pulsed-power accelerator into X-rays. On the Saturn pulsed-power accelerator at Sandia National Laboratories, currents of 6-8 WA with a risetime of less than 50 ns have been used to drive cylindrically-symmetric arrays of wires, producing X-ray energies greater than 400 kJ with X-ray pulsewidths less than 5 ns and peak X-ray powers of 75 +- 10 TW. Using similar loads, PBFA Z has produced > 1.5 MJ and > 150 TW of X-rays in the first 4 months of operation in the z-pinch mode. These X-ray energies and powers are records for laboratory X-ray production. The X-ray output can be thermalized into a near-Planckian X-ray source by containing it within a cylindrical radiation case (a hohlraum). These energetic, intense, large volume, long-lived hohlraum X-ray sources have recently been used for ICF-relevant ablator physics experiments and offer the potential for performing many new basic physics and fusion-relevant experiments.
机译:快速的Z捏内爆可将脉冲功率加速器中存储的10%以上的电能转换为X射线。在桑迪亚国家实验室(Sandia National Laboratories)的土星(Saturn)脉冲功率加速器上,上升时间小于50 ns的6-8 WA电流已用于驱动圆柱对称线阵列,使用X-射线产生大于400 kJ的X射线能量射线脉冲宽度小于5 ns,峰值X射线功率为75 + 10 TW。在类似的负载下,PBFA Z在z收缩模式下运行的前4个月中产生了> 1.5 MJ和> 150 TW的X射线。这些X射线的能量和功率是实验室X射线产生的记录。通过将X射线输出包含在圆柱状的辐射箱中,可以将其热化为近普朗克X射线源。这些高能,高强度,大容量,长寿命的Hohlraum X射线源最近已用于与ICF相关的消融物理实验,并为执行许多新的基础物理和与聚变相关的实验提供了潜力。

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