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Numerical simulations of enhanced ion current losses in the inner magnetically insulated transmission line of the Z accelerator

机译:Z加速器内部磁绝缘传输线中增强离子电流损耗的数值模拟

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摘要

Two-dimensional electromagnetic (EM) particle-in-cell (PIC) simulations of a radial magnetically-insulated-transmission-line are presented and compared to the model of E. M. Waisman, M. P. Desjarlais, and M. E. Cuneo [Phys. Rev. Accel. Beams 22, 030402 (2019)PRABCJ2469-988810.1103/PhysRevAccelBeams.22.030402 in the “high-enhancement” (WDC-HE) limit. The simulations use quasi-equilibrium current and voltage values based on the Sandia National Laboratories Z accelerator, with prescribed injection of an electron sheath that gives electron density profiles qualitatively similar to those used in the WDC-HE model. We find that the WDC-HE model accurately predicts the quasiequilibrium ion current losses in the EM PIC simulations for a wide range of current and voltage values. For the case of two ion species where one is magnetically insulated by the ambient magnetic field and the other is not, the charge of the lighter insulated species in the anode-cathode gap can modify the electric field profile, reducing the ion current density enhancement for the heavier ion species. On the other hand, for multiple ion species, when the lighter ions are not magnetically insulated and are a significant fraction of the anode plasma, they dominate the current loss, producing loss currents which are a significant fraction of the lighter ion WDC values. The observation of this effect in the present work is new to the field and may significantly impact the analysis of ion current losses in the Z machine inner MITL and convolute.
机译:二维电磁(EM)粒子在细胞(PIC)的径向磁绝缘传输线的模拟被呈现,并且与E. M.魏斯曼,M. P. Desjarlais和M. E.库内奥[物理学的模型。启加速。光束22,030402(2019)PRABCJ2469-988810.1103 / PhysRevAccelBeams.22.030402在“高增强”(WDC-HE)的限制。该模拟使用基于Sandia国家实验室Ž加速器准平衡电流和电压值,用电子鞘给出性质上类似于那些在WDC-HE模型中使用的电子密度分布的规定的喷射。我们发现,WDC-HE建模准确地预测在EM PIC模拟中quasiequilibrium离子电流损失大范围的电流和电压值的。对于其中一个被磁性由周围磁场绝缘并且另一个不是,电荷在阳极 - 阴极间隙中的打火机绝缘物质的可修改的电场分布,降低了离子电流密度的增强两个离子种类的情况下较重的离子种类。在另一方面,对于多个离子种类,当较轻离子不是磁绝缘,并且所述阳极的等离子体的显著分数,它们支配电流损失,产生其是轻离子WDC值的显著分数损耗电流。在目前的工作中该效应的观察是新的领域,并且可以显著影响的在Z机内MITL和回旋离子电流损失分析。

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