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LH launcher Arcs Formation and Detection on JET

机译:LH发射器弧形在喷气机上形成和检测

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Mechanisms of arc formation have been analyzed and the critical electric fields for the multipactor effect calculated, compared to the experimental values and found to be within the normal operational space of the LH system on JET. It has been shown that the characteristic electron energy (20-1000)eV for the highest multipactor resonances (N(velence)4-9) are within the limits of secondary electron yield above 1 required for multipactoring. Electrons with these energies provide the highest gas desorption efficiency when hitting the waveguide walls. The effect of higher waveguide modes and magnetic field on the multipactor was also considered. The distribution function for electrons accelerated by LH waves in front of the launcher has been calculated. The field emission currents have been estimated and found to be small. It is proposed that emission of Fe15,16 lines, which can be obtained with improved diagnostics, could be used to detect arcs that are missed by a protection system based on the reflected power. The reliability and time response of these signals are discussed. A similar technique based on the observation of the emission of low ionized atoms can be used for a fast detection of other undesirable events to avoid sputtering or melting of the plasma facing components such as RF antenna. These techniques are especially powerful if they are based on emission uniquely associated with specific locations and components.
机译:已经分析了弧形形成机制,与实验值相比计算的多移液器效应的临界电场,发现在喷射器上的LH系统的正常运行空间内。已经表明,用于最高多移膜谐振(N(velence)4-9)的特性电子能量(20-1000)EV在多弧度所需的1以上的二次电子收益率的极限范围内。具有这些能量的电子在撞击波导壁时提供最高的气体解吸效率。还考虑了高波导模式和磁场对多移液器的影响。已经计算了发射器前面的LH波加速的电子的分布函数。已经估计了场发射电流并发现很小。提出,可以使用改进的诊断可以获得的Fe15,16行的发射,可用于检测基于反射功率的保护系统错过的电弧。讨论了这些信号的可靠性和时间响应。一种类似的技术,基于低电离原子的发射的观察的技术可用于快速检测其他不希望的事件,以避免溅射或熔化等离子体面向诸如RF天线的等离子体组件。如果基于与特定位置和组件唯一相关的发射,这些技术尤其强大。

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