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Radial electric field and rotation of the ensemble of plasma particles in tokamak

机译:托卡马克中的径向电场和等离子体粒子集合的旋转

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The velocity of macroscopic rotation of an ensemble of charged particles in a tokamak in the presence of an electric field has been calculated in a collisionless approximation. It is shown that the velocity of toroidal rotation does not reduce to a local velocity of electric drift and has opposite directions on the inner and outer sides of the torus. This result is supplemented by an analysis of the trajectories of motion of individual particles in the ensemble, which shows that the passing and trapped particles of the ensemble acquire in the electric field, on the average, different toroidal velocities. For the trapped particles, this velocity is equal to that of electric drift in the poloidal magnetic field, while the velocity of passing particles is significantly different. It is shown that, although the electric-field-induced shift of the boundaries between trapped and passing particles in the phase space depends on the particle mass and charge and is, in the general case, asymmetric, this does not lead to current generation.
机译:已经以无碰撞近似计算了托卡马克中带电粒子整体在电场存在下的宏观旋转速度。结果表明,环向旋转的速度不会降低到局部的电漂移速度,并且在环的内侧和外侧具有相反的方向。通过分析整体中单个粒子的运动轨迹可以补充此结果,该分析表明,整体中,通过和捕获的整体中的粒子平均在电场中获得不同的环形速度。对于被捕获的粒子,该速度等于在极磁场中的电漂移速度,而通过粒子的速度则明显不同。可以看出,尽管电场引起的相空间中被俘获和通过的粒子之间的边界的移动取决于粒子的质量和电荷,并且通常情况下是不对称的,但这不会导致电流的产生。

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