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Central impurity toroidal rotation in ICRF heated Alcator C-Mod plasmas

机译:ICRF加热的Alcator C-Mod等离子体中的中心杂质环面旋转

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Central impurity toroidal rotation has been observed in Alcator C-Mod ICRF heated plasmas, from the Doppler shifts of argon X ray lines. Rotation velocities of up to 1.3 × 10~5 m/s in the co-current direction have been observed in H mode discharges with no direct momentum input. There is a strong correlation between the increase in the central impurity rotation velocity and the increase in the plasma stored energy, induced by ICRF heating, although other factors may be involved. This implies a close association between energy and momentum confinement. Co-current rotation is also observed during purely ohmic H modes. In otherwise similar discharges with the same stored energy increase, plasmas with lower current rotate faster. For hydrogen minority (D(H)) heating, plasmas with the highest rotation have an H/D ratio between 5 and 10% and have the resonance location in the inner half of the plasma, i.e. in the same conditions that are conducive to the best ICRF absorption and heating. Comparisons with neoclassical theory indicate that the ion pressure gradient is an unimportant contributor to the central impurity rotation and the presence of a substantial core radial electric field is inferred during the ICRF pulse. An inward shift of ions induced by ICRF waves could give rise to a non-ambipolar electric field in the plasma core.
机译:在Alcator C-Mod ICRF加热的等离子体中,由于氩X射线线的多普勒频移,已观察到中心杂质环面旋转。在没有直接动量输入的H模式放电中,观察到并流方向的旋转速度高达1.3×10〜5 m / s。尽管可能会涉及其他因素,但由ICRF加热引起的中心杂质旋转速度的增加与等离子体存储能量的增加之间存在很强的相关性。这意味着能量和动量限制之间的紧密联系。在纯欧姆H模式下也观察到并流旋转。在其他情况下,具有相同存储能量的类似放电增加,具有较低电流的等离子体旋转得更快。对于少数氢(D(H))加热,具有最高旋转度的等离子体的H / D比率在5%和10%之间,并且在等离子体的内半部具有共振位置,即在有利于产生氢的相同条件下最佳的ICRF吸收和加热。与新古典理论的比较表明,离子压力梯度是导致中心杂质旋转的重要因素,并且在ICRF脉冲期间可以推断出存在明显的核心径向电场。由ICRF波感应的离子向内移动可能会在等离子体核心中产生非双极性电场。

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