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Observation and Characterisation of Trapped Electron Modes in Wendelstein 7-X

PLASMA PHYSICS AND CONTROLLED FUSION(2025)

Forschungszentrum Julich GmbH | Max Planck Inst Plasma Phys | Univ Lorraine | Princeton Plasma Phys Lab | CEA

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Abstract
In the past, quasi coherent (QC) modes were reported for nearly all tokamaks. The general definition describes modes as QC when the magnitude squared coherence is in the range of 0.3 to 0.6. QC modes are observed in the plasma core as well as in the plasma edge and can have quite different physical origins. The one in the core are observed in plasmas with low collisionality, where the electron temperature exceeds the ion temperature in the plasma core. This is the case for electron cyclotron heating in general. The origin of these modes are electrons trapped within a magnetic mirror, as reported in the past from various fusion devices. The so-called trapped-electron modes (TEMs) belong to drift wave instabilities and can be destabilized by electron-temperature gradients in the plasma core. From the diagnostic point of view, QC modes appear as fluctuations in electron density and temperature. Therefore, the microwave reflectometer is very well suited to monitor these modes. This paper describes experiments, conducted at the Wendelstein 7-X stellarator (W7-X), which aim at detecting QC modes at low wave numbers. A poloidal correlation reflectometer installed at W7-X, is able to measure low wave numbers ( k perpendicular to <= 3.5cm-1). For medium line-averaged densities ( integral ne <= 6x1019m-2) the plasma core is accessible for this diagnostic. For different magnetic configurations and plasma parameters, broad QC structures are observed in the coherence spectra. From the analysis of the rotation and the poloidal structure, these QC modes show the properties of electron-temperature-gradient driven TEMs. A linear relation between the mode velocity and the rotation frequency is found. The relation is uniform and confirms the nature of QC-mode observation as TEM in tokamaks, too.
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quasi coherent modes,trapped electron modes,reflectometry,W7-X
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要点】:本文在Wendelstein 7-X恒星器中观测并分析了准相干模式(QC模式),确认了这些模式为电子温度梯度驱动的捕获电子模式(TEMs),并发现了模式速度与旋转频率的线性关系。

方法】:利用安装在Wendelstein 7-X上的极向相关性反射计,测量了低波数(k⊥≤3.5cm^-1)的准相干模式。

实验】:在Wendelstein 7-X恒星器上进行的实验中,通过改变不同的磁场配置和等离子体参数,使用极向相关性反射计在中等线平均密度(∫ne≤6x10^19m^-2)下,观测到了广泛的准相干结构,并分析了这些结构的旋转和极向结构,确认了其为电子温度梯度驱动的TEMs。实验结果显示了模式速度与旋转频率之间的线性关系。