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Effect of krypton admixture in deuterium on neutron yield in a megaampere dense plasma focus

机译:Krypton混合物在氘代致密等离子体焦点中中子产量对中子产量的影响

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摘要

Experiments on a MA-class Dense Plasma Focus (DPF) device have been carried out to investigate changes in neutron production by adding moderate amounts of krypton to a deuterium fill gas. The neutron yield from Z-pinch devices, including DPFs, conventionally scales as the peak current to the fourth power. However, a dramatic drop-off from ~I~4 scaling occurs above 3 MA, which recent modeling [D. T. Offermann et ah, Phys. Rev. Lett. 116, 195001 (2016)] attributed to the transition in the predominant neutron production mechanism from beam-target fusion to thermonuclear fusion. Previously, the addition of Kr (and other high-Z) dopants has been shown to enhance beam-target fusion yields at currents below 300 kA, with optimal concentrations at 1%-2% Kr, whereas here we show that the optimal concentration of Kr at the MA level is near 0.1% by volume-elucidating a trend in the optimal Kr doping concentration as a function of the device scale. The neutron time-of-flight data reveal that Kr doping creates shorter and more intense neutron bursts, likely due a tighter but unstable pinch, highlighting a key trade-off for Kr doping.
机译:已经进行了对MA-Class致密等离子体聚焦(DPF)装置的实验,以研究通过将中等量的氪气加入氘填充气体来研究中子生产的变化。来自Z-PINCH器件的中子产量,包括DPF,通常是尺度为第四电源的峰值电流。然而,从〜i〜4缩放的剧烈滴落发生在3 mA以上,最近的建模[D. T.优惠议员啊,物理。 rev. lett。 116,195001(2016)]归因于从梁 - 靶融合到热核融合的主要中子生产机制的过渡。以前,已显示kr(和其他高z)掺杂剂的添加以增强300ka以下电流的光束 - 靶融合产率,最佳浓度为1%-2%Kr,而在此显示出最佳浓度通过释放最佳KR掺杂浓度的趋势,MA水平的KR接近0.1%,作为装置尺度的函数。中子的飞行时间数据显示,KR掺杂产生较短,更强烈的中子突发,可能是由于较小但不稳定的捏,突出了KR掺杂的关键权衡。

著录项

  • 来源
    《Journal of Applied Physics》 |2020年第14期|143302.1-143302.7|共7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;

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

    Mission Support and Test Services LLC Las Vegas Nevada 89030 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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