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Mechanism for ion acceleration along the normal to the axis of a beam-plasma discharge in a weak magnetic field

机译:弱磁场中沿束流等离子体放电轴法线的离子加速机制

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摘要

The mechanism responsible for the previously discovered phenomenon of acceleration of an ion flow along the normal to the axis of a beam-plasma discharge in a weak magnetic field is investigated. It is suggested that the ions are accelerated in the field of a helicon wave excited in the discharge plasma column. It is shown theoretically that, under actual experimental conditions, a helicon wave can be excited at the expense of the energy of an electron beam. The spectral parameters and spatial structure of the waves excited in a beam-plasma discharge in the frequency ranges of Langmuir and helicon waves are studied experimentally and are shown to be related to the parameters of the ion flow. Theoretical estimates are found to agree well with the experimental results. (c) 2005 Pleiades Publishing, Inc.
机译:研究了在弱磁场中导致先前发现的离子流沿垂直于束等离子体放电轴的法线加速现象的机理。建议离子在放电等离子体柱中激发的螺旋波场中被加速。理论上表明,在实际实验条件下,可以以牺牲电子束能量为代价来激发螺旋波。实验研究了在Langmuir和Helicon波的频率范围内在束等离子放电中激发的波的光谱参数和空间结构,并证明它们与离子流的参数有关。理论估计值与实验结果非常吻合。 (c)2005年Pleiades Publishing,Inc.

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