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ELECTRON CYCLOTRON COUNTER CURRENT DRIVE EXPERIMENTS IN LOWER HYBRID CURRENT DRIVE PLASMA IN TRIAM-1M

机译:TRIAM-1M下混合电流驱动等离子体中的电子回旋反向电流驱动实验

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Combined experiments with lower hybrid (LH) waves (LHWs) and electron cyclotron (EC) waves (ECWs) have been performed to study counter (ctr) current drive (CD) (ctr-CD) in LHCD plasma. Although there exists a large spectrum gap under the condition of the forward (FW) LHCD at high ratio ( > 13) of the thermal velocity and the phase velocity, the relativistic Doppler resonance for backward (BW) ECWs coupled with the energetic electrons streaming along the current direction is used to confirm that the gap in the opposite velocity region is also filled by BW LHWs and the counter current tends to be driven. Three experimental scenarios have been studied for ctr-CD by the following experiments: (a) BW-LHW injection intornFW LHW, (b) BW-ECW injection into FW LHW, and (c) BW-ECW injection into bidirectional BW-LHCD and FW-LHCD plasma. A transition depending on the power ratio is observed in case (a). The Ohkawa current is discussed for the co-driven current observation for case (b). The role of the amount of the resonance electrons is understood as a function of the power ratio of BW LHW to FW LHW for case (c).
机译:已进行了低杂波(LH)波(LHWs)和电子回旋加速器(EC)波(ECWs)的组合实验,以研究LHCD等离子体中的逆向(ctr)电流驱动(CD)(ctr-CD)。尽管在正向(FW)LHCD的热速度和相速度之比高(> 13)的条件下存在较大的光谱间隙,但反向(BW)ECW的相对论多普勒共振与高能电子沿电流方向用于确认反向速度区域中的间隙也被BW LHW填充,并且趋向于驱动反向电流。通过以下实验研究了ctr-CD的三个实验方案:(a)BW-LHW注入rnFW LHW,(b)BW-ECW注入FW LHW,以及(c)BW-ECW注入双向BW-LHCD和FW-LHCD血浆。在情况(a)中观察到取决于功率比的转变。讨论了大川电流,以进行情况(b)的共同驱动电流观察。对于情况(c),共振电子数量的作用被理解为BW LHW与FW LHW功率比的函数。

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