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Measurement of the instability threshold for toroidal Alfven eigenmodes in JET plasmas with forward and reversed magnetic field

机译:正向和反向磁场在JET等离子体中环形Alfven本征模式的不稳定性阈值的测量

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In this paper we have investigated the effect of reversing the direction of the magnetic field and plasma current, hence the ion del B-drift direction, on the instability threshold of toroidal Alfven eigenmodes with toroidal mode number (n) in the range vertical bar n vertical bar = 3-10. These modes are driven by MeV-energy protons produced by minority H(D) ion cyclotron resonance frequency heating. A larger fast ion drive is found to be required to destabilize the modes when the magnetic field and plasma current are reversed with respect to the usual JET configuration (i.e. when the ion del B-drift is directed away from the divertor), with the difference decreasing for increasing n.
机译:在本文中,我们研究了在垂直条形n的范围内,反转磁场和等离子流的方向,从而改变离子del B漂移方向,对具有环形模数(n)的环形Alfven本征模的不稳定性阈值的影响竖线= 3-10。这些模式是由少数H(D)离子回旋加速器共振频率加热产生的MeV能量质子驱动的。当磁场和等离子电流相对于常规JET配置反向时(即,当离子del B漂移被引导离开分流器时),发现需要更大的快速离子驱动器才能使模式不稳定。为增加n而减少。

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