Study of CERC Using Newly Installed 77 GHz Gyrotron in LHD

H. Takahashi, T. Shimozuma, M. Yokoyama, T. Ido, S. Kubo, A. Shimizu, Y. Yoshimura, H. Igami, T. Mutoh
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Abstract

We have investigated the transition to Core Electron‐Root Confinement (CERC) using the 77 GHz ECRH system, which was newly installed in the Large Helical Device (LHD). The focal point scan of the ECRH was carried out shot by shot in the same poloidal surface along the magnetic field of 2.75 T, which is the fundamental resonance surface for 77 GHz ECRH. The formation of the steep gradient in the electron temperature and the change of the radial electric field from negative to positive value in the plasma core region were observed by the ECRH injection to ρ<0.5. The foot point of the peaked profile of the electron temperature appeared near the m/n = 2/1 rational surface, which was located at ρ∼0.5. These results imply that localized ECRH in the inner region within the lower order rational surface and/or the electron heat flux across the rational surface play important roles for the transition to CERC. We also confirmed that the calculated radial electric field from a neoclassical theory qualitatively agreed...
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LHD中新安装的77 GHz回旋管CERC研究
我们利用新安装在大型螺旋装置(LHD)上的77 GHz ECRH系统研究了向核心电子根约束(CERC)的过渡。沿2.75 T磁场(77 GHz ECRH的基共振面)在同一极向面上逐片进行焦点扫描。ECRH注入到ρ<0.5时,观察到等离子体核心区电子温度形成陡峭的梯度,径向电场由负值变为正值。电子温度峰值曲线的脚点出现在m/n = 2/1有理面附近,位于ρ ~ 0.5处。这些结果表明,低阶有理表面内区域的局部ECRH和/或通过有理表面的电子热流在向CERC过渡中起着重要作用。我们还证实了从新古典理论计算的径向电场在性质上与…
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