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JET experiments to assess the clamping of the fast ion energy distribution during ICRF heating due to finite Larmor radius effects

机译:JET实验评估有限拉莫尔半径效应在ICRF加热过程中快速离子能量分布的钳位

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Experiments have been performed on the JET tokamak with 2nd harmonic ion cyclotron resonance heating (ICRH) of hydrogen in deuterium plasmas to assess the role of finite Larmor radius (FLR) effects on the resonant ion distribution function. More specifically, the clamping of high-energy resonant particle distribution due to weak wave-particle interaction at high energy is studied. The distributions of ICRH heated hydrogen ions have been measured with a high-energy neutral particle analyser in the range of 0.29-1.1 MeV. By changing the electron density the energy E*, around which the wave-particle interaction becomes weak, is varied. The dependence of the ion distribution on E* is experimentally observed for a number of discharges and FLR effects are clearly seen to affect the high energy tail shape. Experiments have been analysed with the combination of ICRH modelling codes PION and FIDO, including FLR effects, and good agreement with measurements have been found.
机译:已经在氘等离子体中用氢的二次谐波离子回旋共振加热(IC​​RH)在JET托卡马克上进行了实验,以评估有限拉莫半径(FLR)对共振离子分布函数的作用。更具体地,研究了在高能量下由于弱的波-粒子相互作用而导致的高能量共振粒子分布的钳位。用高能中性粒子分析仪测量了ICRH加热的氢离子的分布,其分布范围为0.29-1.1 MeV。通过改变电子密度,波粒相互作用减弱的能量E *发生了变化。对于许多放电,实验观察到了离子分布对E *的依赖性,并且可以清楚地看到FLR效应会影响高能尾形。使用ICRH建模代码PION和FIDO的组合对实验进行了分析,包括FLR效应,并且发现与测量值具有很好的一致性。

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