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Experimental investigation of the compression and heating of an MHD-driven jet impacting a target cloud

机译:影响目标云的MHD驱动喷射射流压缩和加热的实验研究

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摘要

Adiabatic compression has been investigated by having an MHD-driven plasma jet impact a gas target cloud. Compression and heating of the jet upon impact were observed and compared to theoretical predictions. Diagnostics for comprehensive measurements included a Thomson scattering system, a fast movie camera, a translatable fiber-coupled interferometer, a monochromator, a visible-light photodiode, and a magnetic probe array. Measurements using these diagnostics provided the time-dependent electron density, electron temperature, continuum emission, line emission, and magnetic field profile. Increases in density and magnetic field and a decrease in jet velocity were observed during the compression. The electron temperature had a complicated time dependence, increasing at first, but then rapidly declining in less than 1 mu s which is less than the total compression time. Analysis indicates that this sudden temperature drop is a consequence of radiative loss from hydrogen atoms spontaneously generated via three-body recombination in the high-density compressed plasma. A criterion for how fast compression must be to outrun radiative loss is discussed not only for the Caltech experiment but also for fusion-grade regimes. In addition, the results are analyzed in the context of shocks the effects of which are compared to adiabatic compression. Published by AIP Publishing.
机译:通过使MHD驱动的等离子体喷射冲击气体靶云,已经研究了绝热压缩。观察到射流的压缩和加热,并与理论预测相比。综合测量的诊断包括汤姆森散射系统,快速电影摄像头,可转换的光纤耦合干涉仪,单色器,可见光光电二极管和磁探测阵列。使用这些诊断的测量提供了时间依赖的电子密度,电子温度,连续发射,线发射和磁场轮廓。在压缩期间观察到密度和磁场的增加,并且观察到喷射速度的降低。电子温度具有复杂的时间依赖性,首先增加,但随后在小于1μs的小于总压缩时间的时间内快速下降。分析表明,该突然的温度下降是通过在高密度压缩等离子体中通过三体重组自发产生的氢原子的辐射损失的结果。对于CALTECH实验而言,讨论了讨论了超出压缩的快速压缩的标准,而且还用于融合级制度。此外,在冲击冲击的背景下分析结果与绝热压缩相比。通过AIP发布发布。

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