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首页> 外文期刊>Physical review letters >Observations of an Ion-Driven Instability in Non-Neutral Plasmas Confined on Magnetic Surfaces
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Observations of an Ion-Driven Instability in Non-Neutral Plasmas Confined on Magnetic Surfaces

机译:局限在磁性表面上的非中性等离子体中离子驱动不稳定性的观察

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摘要

The first detailed experimental study of an instability driven by the presence of a finite ion fraction in an electron-rich non-neutral plasma confined on magnetic surfaces is presented. The instability has a poloidal mode number m = 1, implying that the parallel force balance of the electron fluid is broken and that the instability involves rotation of the entire plasma, equivalent to ion-resonant instabilities in Penning traps and toroidal field traps. The mode appears when the ion density exceeds approximately 10% of the electron density. The measured frequency decreases with increasing magnetic field strength, and increases with increasing radial electric field, showing that the instability is linked to the E × B flow of the electron plasma. The frequency does not, however, scale exactly with E/B, and it depends on the ion species that is introduced, implying that the instability consists of interacting perturbations of ions and electrons.
机译:首次进行了详细的实验研究,该研究是由有限的离子分数限制在磁性表面上的富电子非中性等离子体中存在的不稳定性所致。该不稳定性的极性模数为m = 1,这意味着电子流体的平行力平衡被破坏,并且不稳定性涉及整个等离子体的旋转,这等效于Penning阱和环形场阱中的离子共振不稳定性。当离子密度超过电子密度的大约10%时,将显示该模式。测得的频率随磁场强度的增加而降低,随径向电场的增加而增加,这表明不稳定性与电子等离子体的E×B流动有关。但是,该频率并不随E / B精确地成比例,它取决于所引入的离子种类,这意味着不稳定性由离子和电子的相互作用扰动组成。

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