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Simulations of Magnetic Field Generation in Unmagnetized Plasmas via Beat-Wave Current Drive

机译:通过拍波电流驱动模拟未磁化等离子体中的磁场

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This work describes the scientific basis and associated simulation results for the magnetization of an unmagnetized plasma via beat-wave current drive. Two-dimensional electromagnetic particle-in-cell simulations have been performed for a variety of angles between the injected waves to demonstrate beat-wave generation in agreement with theoretical predictions of the beat-wave wave vector and saturation time, revealing new 2D effects. The simulations clearly demonstrate electron acceleration by the beat waves and resultant current drive and magnetic field generation. The basic process depends entirely on the angle between the parent waves and the ratio of the beat-wave phase velocity to the electron thermal velocity. The wave to magnetic energy conversion efficiency of the cases examined is as high as 0.2%. The technique could enable novel plasma experiments in which the use of magnetic coils is infeasible.
机译:这项工作描述了通过拍波电流驱动使未磁化等离子体磁化的科学依据和相关的模拟结果。已对注入波之间的各种角度进行了二维电磁粒子模拟,以证明节拍波的产生与节拍波矢量和饱和时间的理论预测相一致,从而揭示了新的2D效果。仿真清楚地表明了由拍波产生的电子加速度以及由此产生的电流驱动和磁场的产生。基本过程完全取决于母波之间的角度以及拍波相速度与电子热速度之比。所检查的情况下,波到磁能的转换效率高达0.2%。该技术可以实现新颖的等离子体实验,在该实验中,电磁线圈的使用是不可行的。

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