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Effect of insulator surface conditioning on the pinch dynamics and x-ray production of a Ne-filled dense plasma focus

机译:绝缘子表面调节对N个填充致密等离子体焦点的夹紧动力学和X射线产生的影响

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摘要

The dense plasma focus (DPF) can be an intense source of x rays, wherein the insulator sleeve strongly dictates the electrical breakdown, which subsequently affects the formation of a plasma sheath and a collapse phase. Experiments on a 25 kJ DPF (operated at 4.4 kJ) are carried out to demonstrate the influence of insulator surface morphology on the pinch structure, dynamics, and x-ray yield using a Ne fill. Two borosilicate insulators are directly compared, one with a smooth finish and the other machined with four circumferential grooves traversing the perimeter of the exterior insulator surface. Comparisons are made through same-shot imaging diagnostics of the evolving plasma sheath during breakdown, rundown, and at the pinch in addition to the time-resolved measurements of emitted x rays via filtered photodiodes. The presence of structures on the insulator sleeve reduces x-ray production across all fill pressures by a factor of 2.8 ± 2.4 on average and reduces the highest x ray producing shots by a factor of 5.5 ± 1.8. Observations of sheath asymmetry and inhomogeneity at liftoff are observed and correlated with subsequent observations of off-axis radial collapse. Taken together, this suggests that local variations in the insulator surface decrease the spatial uniformity of the sheath, leading to an azimuthally asymmetric focus, reduced electron densities, and, ultimately, degraded x-ray production.
机译:致密的等离子体焦点(DPF)可以是X射线的强源,其中绝缘体套筒强烈地决定了电击,其随后影响等离子体护套的形成和塌陷阶段。进行25 kJ DPF(在4.4kJ下运行)的实验,以展示使用NE填充的捏合结构,动力学和X射线产量对绝缘子表面形态的影响。比较两种硼硅酸盐绝缘体,一个具有光滑的光洁度,另一个加工,具有四个圆周凹槽,穿过外部绝缘体表面的周边。除了通过过滤光电二极管的发射X射线的时间分辨率测量之外,通过在击穿,损失期间和夹持过程中通过同样的成像诊断进行比较。绝缘体套管上的结构的存在将所有填充压力的X射线产生均可平均2.8±2.4倍,并将最高X射线产生镜头的次数为5.5±1.8。观察鞘不对称和剥离处的不均匀性的观察与随后的离轴径向坍塌观察。连同,这表明绝缘表面中的局部变化降低了护套的空间均匀性,导致方形不调的焦点,降低的电子密度,并且最终降低X射线产生。

著录项

  • 来源
    《Journal of Applied Physics》 |2021年第22期|223303.1-223303.13|共13页
  • 作者单位

    Center for Energy Research UC San Diego San Diego California 92093 USA;

    Center for Energy Research UC San Diego San Diego California 92093 USA;

    Center for Energy Research UC San Diego San Diego California 92093 USA;

    Lawrence Livermore National Laboratory Livermore California 94550 USA;

    Lawrence Livermore National Laboratory Livermore California 94550 USA;

    Center for Energy Research UC San Diego San Diego California 92093 USA;

    Center for Energy Research UC San Diego San Diego California 92093 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 02:08:43

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