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Electron kinetics inferred from observations of microwave bursts during edge localized modes in the mega-amp spherical tokamak

机译:从兆安级球形托卡马克边缘定位模式中微波爆发的观察推断出的电子动力学

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摘要

Recent measurements of microwave and x-ray emission during edge localized mode (ELM) activity in tokamak plasmas provide a fresh perspective on ELM physics. It is evident that electron kinetics, which are not incorporated in standard (fluid) models for the instability that drives ELMs, play a key role in the new observations. These effects should be included in future models for ELMs and the ELM cycle. The observed radiative effects paradoxically imply acceleration of electrons parallel to the magnetic field combined with rapid acquisition of perpendicular momentum. It is shown that this paradox can be resolved by the action of the anomalous Doppler instability which enables fast collective radiative relaxation, in the perpendicular direction, of electrons accelerated in the parallel direction by inductive electric fields generated by the initial ELM instability.
机译:最近在托卡马克等离子体中的边缘局部模式(ELM)活动期间对微波和X射线发射的测量为ELM物理学提供了新的视角。显然,未将电子动力学纳入标准(流体)模型中来驱动ELM的不稳定性,在新的观测中起着关键作用。这些影响应包括在ELM和ELM周期的未来模型中。观察到的辐射效应自相矛盾地暗示了平行于磁场的电子的加速以及垂直动量的快速获取。结果表明,这种反常现象可以通过异常多普勒不稳定性的作用来解决,该异常多普勒不稳定性可以使由初始ELM不稳定性产生的感应电场在平行方向上加速的电子在垂直方向上实现快速的集体辐射弛豫。

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