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Onset and Saturation of Ion Heating by Odd-Parity Rotating Magnetic Fields in a Field-Reversed Configuration

机译:场反转配置中奇偶校验旋转磁场对离子加热的发生和饱和

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摘要

Heating of figure-8 orbit ions by odd-parity rotating magnetic fields (RMF_o) applied to an elongated field-reversed configuration (FRC) is investigated. The largest energy gain occurs at resonances (s ≡ ω_R/ω) of the RMF_o frequency, ω_R, with the figure-8 orbital frequency, ω, and is proportional to s~2 for s-even resonances and to s for s-odd resonances. The threshold for the transition from regular to stochastic orbits explains both the onset and saturation of heating. The FRC magnetic geometry lowers the threshold for heating below that in the tokamak by an order of magnitude.
机译:研究了施加到细长的场反转结构(FRC)的奇偶校验旋转磁场(RMF_o)对图8轨道离子的加热。最大能量增益出现在RMF_o频率ω_R的共振(sωω_R/ω)处,具有图8轨道频率ω,并且对于s偶数共振与s〜2成正比,对于s奇数共振,与s成正比。共鸣。从规则轨道过渡到随机轨道的阈值解释了加热的开始和饱和。 FRC磁性几何将加热的阈值降低到比托卡马克中的阈值低一个数量级。

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