首页> 外文期刊>Plasma Sources Science & Technology >Beam current oscillations driven by cyclotron instabilities in a minimum-B electron cyclotron resonance ion source plasma
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Beam current oscillations driven by cyclotron instabilities in a minimum-B electron cyclotron resonance ion source plasma

机译:最小B电子回旋共振离子源等离子体中回旋不稳定性驱动的束流振荡

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摘要

Experimental observation of cyclotron instabilities in a minimum-B confined electron cyclotron resonance ion source plasma is reported. The instabilities are associated with strong microwave emission and a burst of energetic electrons escaping the plasma, and explain the periodic ms-scale oscillation of the extracted beam currents. Such non-linear effects are detrimental for the confinement of highly charged ions due to plasma perturbations at shorter periodic intervals in comparison with their production time. It is shown that the repetition rate of the periodic instabilities in oxygen plasmas increases with increasing magnetic field strength and microwave power and decreases with increasing neutral gas pressure, the magnetic field strength being the most critical parameter. The occurrence of plasma turbulence is demonstrated to restrict the parameter space available for the optimization of extracted currents of highly charged ions.
机译:报告了在最小B约束电子回旋共振离子源等离子体中回旋加速器不稳定性的实验观察。这种不稳定性与强微波发射和逃逸等离子体的高能电子爆发有关,并解释了提取的束流的周期性ms级振荡。与它们的产生时间相比,由于等离子体扰动在较短的周期间隔内,这种非线性效应不利于高电荷离子的限制。结果表明,氧等离子体中周期性不稳定性的重复率随磁场强度和微波功率的增加而增加,随中性气压的增加而减小,磁场强度是最关键的参数。证明了等离子体湍流的出现限制了可用于优化高电荷离子提取电流的参数空间。

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