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Low-power-threshold parametric decay instabilities of powerful microwave beams in toroidal fusion devices

机译:环形融合装置强大的微波梁的低功率阈值参数衰减稳定性

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摘要

We discuss the experimental conditions responsible for a drastic decrease in the power threshold of parametric decay instabilities under auxiliary electron cyclotron resonance heating (ECRH) in toroidal magnetic fusion devices when the upper hybrid (UH) resonance for the pump wave is absent. We show that for a finite-width pump in the presence of a nonmonotonic (hollow) density profile occurring due to plasma equilibrium in the magnetic islands or anomalous particle fluxes from the ECR layer, 3D localization of one or both daughter waves is possible. This localization leads to the full suppression of daughter wave energy losses from the decay layer and a substantial increase in the nonlinear pumping efficiency. This decreases the power threshold of nonlinear excitation, which can be easily overcome in current ECRH experiments utilizing 1 MW microwave beams. Different scenarios of extraordinary and ordinary wave decays are investigated. The secondary decays of primary daughter waves and pump wave depletion are considered as the most effective mechanisms leading to the transition of primary instability to the saturation regime. The proposed theoretical model was shown to be able to describe the anomalous phenomena discovered in ECRH experiments in different toroidal fusion devices all over the world.
机译:我们讨论了当泵波的上部混合动力(UH)共振在环形磁熔合装置中的辅助电子回旋谐振加热(ECRH)下,讨论负责参数衰减稳定性的功率阈值的实验条件。我们表明,对于由于来自ECR层的等离子体平衡而存在的非单调(中空)密度曲线存在的有限宽度泵,可以实现一个或两个子波的3D定位。该定位导致来自衰减层的子波能量损失的完全抑制,并且非线性泵浦效率的显着增加。这降低了非线性激励的功率阈值,这可以在利用1 MW微波梁的当前ECRH实验中容易地克服。调查了非凡和普通波衰变的不同情景。主要子女波和泵波耗尽的二次衰减被认为是最有效的机制,导致初步不稳定性转变为饱和状态。所提出的理论模型显示能够描述在世界各地的不同环形融合装置中发现的ECRH实验中发现的异常现象。

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