Velocity-space distribution function of fast ions in a sawtoothing plasma

Tommaso Barberis, Francesco Porcelli
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Abstract

This study explores the influence of sawtooth oscillations on the velocity space distribution of fast ions in tokamak plasma discharges. The relevant Fokker-Planck equation for fast ions is solved analytically. Two distinct effects arising from the temperature drop associated with a sawtooth crash and their impact on the distribution function of fast ions are considered. The first effect involves the modulation of the fusion alpha particle source on the timescale of the sawtooth period, linked to the drop in fusion yield resulting from the sawtooth temperature relaxations. The second effect is tied to the increase of the slowing-down time during the sawtooth ramp, causing particles born later in the sawtooth cycle to experience reduced slowing down compared to those born right after the crash, creating an accumulation-like mechanism at higher energies. In regimes where the sawtooth period is shorter than the fast ion slowing-down time, the combined influence of these effects gives rise to fast ion distribution functions that transiently exhibit positive slopes in velocity space.
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锯齿等离子体中快速离子的速度空间分布函数
本研究探讨了锯齿振荡对托卡马克等离子体放电中快离子速度空间分布的影响。对快速离子的相关福克-普朗克方程进行了分析求解。研究考虑了与锯齿碰撞相关的温度下降所产生的两种不同效应及其对快速离子分布函数的影响。第一种效应涉及在锯齿周期的时间尺度上对核聚变阿尔法粒子源的调制,这与锯齿温度松弛导致的核聚变产率下降有关。第二种效应与锯齿斜坡期间减速时间的增加有关,导致在锯齿周期后期诞生的粒子与碰撞后诞生的粒子相比,减速时间缩短,从而在较高能量下形成一种类似累积的机制。在锯齿周期短于快离子减速时间的情况下,这些效应的综合影响会导致快离子分布函数在速度空间瞬时呈现正斜率。
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