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Study of implosion dynamics and radiative mechanisms of planar foil liners in comparison with planar wire arrays at 1.7 MA UNR zebra generator

机译:平面箔衬里的爆炸动力学和辐射机制与1.7 mA毫凹斑马发生器的平面线阵列相比

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Planar foil liners are alternative loads to wire arrays at multi-mega ampere generators as well as a promising object for the investigation of the magnetic energy dissipation mechanisms in Z-pinch plasmas. Experimental comparison of implosion dynamics and radiative mechanisms of Al planar foils and single planar wire arrays (SPWAs) of the same width and linear mass was performed for the 0.9–1.6-MA current region. Foils radiate approximately 80–90% of the total yield and power of SPWAs. The non-LTE code was applied to estimate the average electron temperature in Al planar foils that was found to be 20% higher, than that in SPWAs, and the average electron density in foils that was an order of magnitude lower than for SPWAs. Also, the foils are characterized by smaller axial gradient of electron temperature and density than SPWAs. In addition, anisotropic emission from Al planar foils was observed to be similar to Al SPWAs: the total yield registered orthogonally to the foil plane was 1.3 times higher than that along the plane (compared to 1.5 for SPWAs). The anomalous MHD resistivity consideration suggests that a significant part of foil radiation could be due to formation of strongly-inhomogeneous plasma through instabilities appearing on shadowgraphic images of a symmetric foil as a result of initial sharp edges inhomogeneity. This idea was tested in the recent experiments with modified foils where one edge was initially sharp and the other was folded with smaller initial inhomogeneity. The yield from a foil with a folded edge was 13–15% lower than that with both sharp edges as predicted by MHD modeling. Presented results on radiation from foils suggest them as potentially useful x-ray sources for various HEDP applications due to simpler load foil preparations compared to wire arrays. Preliminary results of the research we started on radiation from double foils in comparison with double planar wire arrays (DPWAs) are also discussed.
机译:平面箔衬垫是在多兆安培发电机替代负载导线阵列,以及用于在Z箍缩等离子体的磁能量耗散机制的研究的有前途的对象。为0.9-1.6-MA电流区域进行内爆动力学和Al平面箔和相同的宽度的单一平面导线阵列(SPWAs)和线性质量的辐射机理的实验比较。箔辐射SPWAs的总产率和功率的大约80-90%。非LTE代码被用于估计在被认为是高20%的Al箔的平面的平均电子温度,比SPWAs,并且在这是一个数量级比SPWAs下箔的平均电子密度。此外,箔通过电子温度和密度比SPWAs的较小的轴向梯度表征。此外,观察到由Al箔平面各向异性发射是类似的Al SPWAs:总收率注册垂直于箔平面比沿平面(相对于1.5 SPWAs)的1.3倍。异常电阻率MHD考虑表明,箔辐射的显著部分可能是由于通过出现在对称箔作为初始尖锐边缘的不均匀性的结果的逆光图像的不稳定性形成强不均匀的等离子体。这个想法是在最近的实验改良的箔,其中一个边缘最初是尖锐,而另一个用较小的初始非均匀性折叠测试。从与折叠边缘的箔的产率为13-15%低于与两个尖锐的边缘通过MHD建模所预测的。从箔辐射呈现的结果表明它们作为由于箔相比导线阵列制剂简单负载可能有用的x射线源的各种应用HEDP。还讨论了我们在与双平面导线阵列(DPWAs)相比开始从双箔辐射研究的初步结果。

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