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Geodesic acoustic mode evolution in L-mode approaching the L-H transition on JET

机译:L-M模式的测量声学模式演变在喷射时接近L-H转换

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Geodesic acoustic modes (GAMs) may generate strong oscillations in the radial electric field and therefore are considered as a possible trigger mechanism for the L-H transition. This contribution focuses on the characterization of GAMs in JET plasmas when approaching the L-H transition aiming at understanding their possible role in triggering the transition. GAM and turbulence characteristics are measured at the plasma edge using Doppler backscattering for different plasma current and line-averaged densities. The radial location of the GAM often moves further inside when neutral beam injection is applied possibly as a response to changes in the turbulence drive. GAMs are found to have modest amplitude at the transition except for high density discharges where GAMs are stronger, suggesting that the GAM is not responsible for facilitating the transition as the L-H power threshold also increases with density in the high density branch of the L-H transition. Our results suggest that the GAM alone does not play a leading role for causing the L-H transition at JET.
机译:测地声学模式(GAMS)可以在径向电场中产生强振荡,因此被认为是L-H转变的可能触发机制。当接近L-H转变时,这种贡献侧重于射流等离子体中的GAMS的表征,旨在了解在触发过渡时可能的作用。使用多普勒反向散射的等离子体边缘测量GAM和湍流特性,用于不同的等离子体电流和线平均密度。当中性光束喷射可能作为对湍流驱动器中的变化的响应时,GAM的径向位置通常在内部移动。除了GAMS更强的高密度放电之外,在转换中发现GAM在转换中具有适度幅度,表明GAM不负责促进转换,因为L-H功率阈值也随着L-H转换的高密度分支的密度而增加。我们的结果表明,单独的GAM不会发挥引起射流的L-H过渡的主导作用。

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