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Resonant interaction of tearing modes with energetic-ions resulting in fishbone activities on HL-2A

机译:撕裂模式与高能离子的共振相互作用导致HL-2A上的鱼骨活动

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The resonant interaction between energetic-particles and tearing mode is an unresolved physics issue at present. It is found for the first time in tokamaks that an unstable tearing mode with slowly rotating m = 2/1 helicity, where m represent poloidal/toroidal mode-numbers, interacts with energetic-ions and results in amplitude-bursting/frequency-chirping fishbone-like activities. Nonlinear hybrid kinetic-MHD simulations with M3D-K code prove that the co-passing energetic-ions are responsible for the drive of tearing modes, and the waveparticle resonance condition is satisfied at omega(phi) - 2 omega(theta) - omega = 0, where omega(phi), omega(theta) and omega are the toroidal, poloidal angular frequencies of energetic-ions and the mode frequency respectively. These findings can help the understanding of tearing mode induced energetic-particle loss and particle acceleration during the tearing mode reconnection in laboratory and space plasmas.
机译:高能粒子与撕裂模式之间的共振相互作用是目前尚未解决的物理问题。首次在托卡马克中发现一种不稳定的撕裂模式,其缓慢旋转的m / n = 2/1螺旋度,其中m / n代表极向/环向模数,与高能离子相互作用并导致振幅爆发/频鱼骨状活动。带有M3D-K代码的非线性混合动力学MHD仿真证明,共同传递的高能离子负责驱动撕裂模式,并且在omegaφ-2 omegatheta-omega =时满足了波粒共振条件0,其中ω,ω和ω分别是高能离子的环形,多倍角频率和模式频率。这些发现可以帮助理解在实验室和空间等离子体中的撕裂模式重新连接过程中,撕裂模式引起的高能粒子损失和粒子加速。

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