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Scattering of ECRF waves by edge density fluctuations and blobs

机译:边缘密度波动和斑点对ECRF波的散射

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摘要

The scattering of electron cyclotron waves by density blobs embedded in the edge region of a fusion plasma is studied using a full-wave model. The full-wave theory is a generalization of the usual approach of geometric optics ray scattering by blobs. While the latter allows for only refraction of waves, the former, more general formulation, includes refraction, reflection, and diffraction of waves. Furthermore, the geometric optics, ray tracing, model is limited to blob densities that are slightly different from the background plasma density. Observations in tokamak experiments show that the fluctuating density differs from the background plasma density by 20% or more. Thus, the geometric optics model is not a physically realistic model of scattering of electron cyclotron waves by plasma blobs. The differences between the ray tracing approach and the full-wave approach to scattering are illustrated in this paper.
机译:使用全波模型研究了电子回旋波通过嵌在聚变等离子体边缘区域中的密度斑点的散射。全波理论是对几何光学通过斑点散射的常规方法的概括。后者仅允许波的折射,而前者更为笼统的表述包括波的折射,反射和衍射。此外,几何光学,射线追踪模型仅限于与背景等离子体密度稍有不同的斑点密度。托卡马克实验的观察结果表明,波动密度与背景血浆密度相差20%或更多。因此,几何光学模型不是由等离子体团块散射电子回旋波的物理现实模型。本文阐述了射线追踪方法和全波散射方法之间的差异。

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