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Collisionless microtearing modes in hot tokamaks: Effect of trapped electrons

机译:热托卡马克中的无碰撞微撕裂模式:被困电子的影响

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Collisionless microtearing modes have recently been found linearly unstable in sharp temperature gradient regions of large aspect ratio tokamaks. The magnetic drift resonance of passing electrons has been found to be sufficient to destabilise these modes above a threshold plasma beta. A global gyrokinetic study, including both passing electrons as well as trapped electrons, shows that the non-adiabatic contribution of the trapped electrons provides a resonant destabilization, especially at large toroidal mode numbers, for a given aspect ratio. The global 2D mode structures show important changes to the destabilising electrostatic potential. The beta threshold for the onset of the instability is found to be generally downshifted by the inclusion of trapped electrons. A scan in the aspect ratio of the tokamak configuration, from medium to large but finite values, clearly indicates a significant destabilizing contribution from trapped electrons at small aspect ratio, with a diminishing role at larger aspect ratios. (C) 2015 AIP Publishing LLC.
机译:最近发现,在高纵横比托卡马克的尖锐温度梯度区域中,无碰撞微撕裂模式线性不稳定。已经发现,通过的电子的磁漂移共振足以使这些模式在阈值等离子体β之上不稳定。一项对包括传递电子和被俘获电子在内的全球动力学研究表明,对于给定的纵横比,被俘获电子的非绝热作用会引起共振不稳定,尤其是在较大的环形模数下。全局2D模式结构显示了对不稳定的静电势的重要变化。发现不稳定性开始的β阈值通常会因包含捕获的电子而降低。从托卡马克构型的纵横比扫描,从中等到大但有一个有限的值,清楚地表明了在较小的纵横比下捕获电子的显着破坏稳定作用,而在较大的纵横比下作用逐渐减弱。 (C)2015 AIP Publishing LLC。

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