Electron-scale turbulence characteristics with varying electron temperature gradient in LHD

Tatsuhiro Nasu, T. Tokuzawa, Motoki Nakata, K. Ida, S. Inagaki, Masaki Nishiura, Yasuo Yoshimura, Ryoma Yanai, Kenji Tanaka, M. Yoshinuma, Tatsuya Kobayashi, Akira Ejiri, K. Y. Watanabe, Ichihiro Yamada
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Abstract

The electron-scale turbulence, whose wavelength is about the electron Larmor radius, is thought to have the potential to cause the stiffness of the electron temperature gradient and degrade the confinement of future burning plasma in which the electron heating by alpha particles is dominant. The dependence of electron-scale turbulence and electron heat flux on the electron temperature inverse gradient length Rax/LTe were investigated. The electron temperature gradient is successfully varied in the range of −3 < Rax/LTe < 12 by controlling the injection power of the on/off-axis electron cyclotron heating. The results show a significant increase in electron-scale turbulence with increasing Rax/LTe, especially in conditions where the Electron Temperature Gradient (ETG) instability is linearly unstable, suggesting the presence of ETG turbulence at high Rax/LTe. The electron heat flux also increases steeply with increasing Rax/LTe. In addition, electron-scale turbulence is observed even at Rax/LTe ∼ 0, which is stable in linear GKV calculations. Finding the cause of this phenomenon is an interesting task for the future.
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LHD 中电子温度梯度变化时的电子尺度湍流特性
电子尺度湍流的波长约为电子的拉莫尔半径,被认为有可能导致电子温度梯度的僵化,并降低未来燃烧等离子体的约束性,在这种等离子体中,α粒子对电子的加热占主导地位。研究了电子尺度湍流和电子热通量与电子温度反梯度长度 Rax/LTe 的关系。通过控制开/关轴电子回旋加热的注入功率,成功地在-3 < Rax/LTe < 12的范围内改变了电子温度梯度。结果表明,随着 Rax/LTe 的增加,电子尺度湍流显著增加,尤其是在电子温度梯度(ETG)不稳定性呈线性不稳定的条件下,这表明在高 Rax/LTe 时存在 ETG 湍流。电子热通量也随着 Rax/LTe 的增加而陡增。此外,甚至在 Rax/LTe ∼ 0 时也观察到了电子尺度湍流,而这在线性 GKV 计算中是稳定的。寻找这一现象的原因是未来的一项有趣任务。
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