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Poloidal rotation of main ions in the CT-6B tokamak

机译:CT-6B托卡马克中主要离子的极向旋转

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The poloidal rotation velocity of neutral hydrogen atoms is measured using the Doppler shift of the Hα spectral line emitted in the CT-6B tokamak. The poloidal rotation of hydrogen atoms is generated through the collisions and charge-exchanges with main ions (protons). Therefore, the rotation direction of main ions can be deduced from that of neutral hydrogen atoms. The experimental results show that the main ions rotate in the electron diamagnetic drift direction, the same as the impurity ions, in the plasma core. The neutral hydrogen atoms rotate also in the electron diamagnetic drift direction in the edge region of the plasma. However, the rotation direction of main ions in the edge region cannot be judged from the experimental result due to the long mean free path of hydrogen atoms in the edge region. An inward diffusion flux of hydrogen atoms toward the torus inside with a velocity of the same order of magnitude as their poloidal rotation is also observed.
机译:使用在CT-6B托卡马克中发射的Hα谱线的多普勒频移测量中性氢原子的极向旋转速度。氢原子的极向旋转是通过与主要离子(质子)的碰撞和电荷交换而产生的。因此,可以从中性氢原子的旋转方向推断出主离子的旋转方向。实验结果表明,等离子体中的主要离子与杂质离子一样,沿电子反磁漂移方向旋转。中性氢原子还在等离子体的边缘区域中沿电子反磁漂移方向旋转。但是,由于边缘区域中氢原子的平均自由程长,因此不能从实验结果判断边缘区域中主离子的旋转方向。还观察到氢原子向内环面的向内扩散通量,其速度与它们的极向旋转相同数量级。

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