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Stabilization of sawteeth with third harmonic deuterium ICRF-accelerated beam in JET plasmas

机译:在JET等离子体中用三次谐波氘ICRF加速束稳定锯齿

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Sawtooth stabilisation by fast ions is investigated in deuterium (D) and D-helium 3 (He3) plasmas of JET heated by deuterium Neutral Beam Injection combined in synergy with Ion Cyclotron Resonance Heating (ICRH) applied on-axis at 3rd beam cyclotron harmonic. A very significant increase in the sawtooth period is observed, caused by the ICRH-acceleration of the beam ions born at 100 keV to the MeV energy range. Four representative sawteeth from four different discharges are compared with Porcelli's model. In two discharges, the sawtooth crash appears to be triggered by core-localized Toroidal Alfven Eigenmodes inside the q = 1 surface (also called "tornado" modes) which expel the fast ions from within the q = 1 surface, over time scales comparable with the sawtooth period. Two other discharges did not exhibit fast ion-driven instabilities in the plasma core, and no degradation of fast ion confinement was found in both modelling and direct measurements of fast ion profile with the neutron camera. The developed sawtooth scenario without fast ion-driven instabilities in the plasma core is of high interest for the burning plasmas. Possible causes of the sawtooth crashes on JET are discussed.
机译:在氘中性束注入与离子回旋共振加热(IC​​RH)协同作用于轴上施加的三束回旋加速器谐波的JET的氘(D)和D-氦3(He3)等离子体中,研究了快离子对锯齿的稳定作用。由于在100 keV处产生的束离子的ICRH加速到MeV能量范围,导致锯齿期显着增加。将来自四个不同排放口的四个代表性锯齿与Porcelli模型进行了比较。在两次放电中,锯齿波崩溃似乎是由q = 1曲面内的核心局部环形Alfven本征模(也称为“龙卷风”模)触发的,该模在可比的时间范围内从q = 1曲面内排出快离子。锯齿期。另外两个放电在等离子体核中未显示出快速的离子驱动不稳定性,并且在中子相机的建模和直接测量快速离子剖面中均未发现快速离子约束的退化。在等离子体核中没有快速离子驱动的不稳定性的发达的锯齿状场景引起了燃烧等离子体的高度关注。讨论了JET上锯齿形碰撞的可能原因。

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