Analysis of the Variability of the L-H Transition Power Threshold in a Helium-4 Discharge
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Graphical Abstract
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Abstract
In this paper, a mechanism about the variability of the L-H transition power thresh- old P L−H is proposed which is based on the ion orbit losses. Only in the edge where there are enough ion orbit losses and the negative radial electric field E r is high enough can the H-mode be triggered. The ion orbit losses are determined by the ion in the loss region under certain edge conditions. For different mass A and different charge Z, the critical loss energy E ∝ Z 2 /A in the loss region. In H and D charges, because the D + loss region is larger than H +, it can be deduced that the P L−H of H is larger than that of D. In a 4 He discharge, experiment finds there exist a considerable number of 4 He 1+ in the plasma edge. The actual ion orbit losses are determined by the mixing ratio of 4 He1+ and 4 He 2+ . The 4 He1+ loss region is larger than that of 4 He2+, and the loss region of D + interposes between 4 He 1+ and 4 He2+ . Different 4 He 1+ content can cause the edge ion losses in a 4 He discharge to be greater than, less than or equal to that in a D discharge. So a 4 He discharge can exhibit multiple experimental phenomena in the P L−H .
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