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Beam Ion Losses Caused by Magnetic Field Ripples in Various Plasma Parameter Ranges in the Large Helical Device

机译:大型螺旋装置中各种等离子体参数范围内的磁场波动引起的束流离子损失

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Beam ion losses from Large Helical Device (LHD) plasmas caused by magnetic field ripples or Coulomb collisions are measured using a scintillator-based lost fast-ion probe (SLIP). The gyroradius and pitch angle distribution of beam-ion losses as well as to the total-beam losses arriving at the SLIP are measured in various plasma parameter ranges. The SLIP reveals that most lost beam ions consist of a pitch angle of 50°- 60° at relatively high toroidal magnetic field strength (Bt). These ions consist of a transition orbit with a large deviation from the flux surface. The beam ion losses arriving at the SLIP (ΓSLIP_SUM) depend on the changes in the line-averaged electron density in a manner analogous to the behavior of beam ion components created by co-going neutral beam injectors. ΓSLIP_SUM normalized by the beam ion components decreases as the magnetic axis position in a vacuum (Rax) shifts inward at Bt of 0.90 T. Not only beam ions having transition orbit but also those having co-going orbit are measured at the relatively low Bt experiments at Rax = 3.60 m. The loss domain corresponding to the co-going orbit disappeared at Bt = 0.75 T. Beam ions having transition orbit as well as those having passing orbits normalized by the beam ion components are suppressed with increasing Bt.
机译:使用基于闪烁器的丢失快速离子探针(SLIP)可以测量由于磁场波动或库仑碰撞而导致的大型螺旋设备(LHD)等离子体产生的束离子损失。在各种等离子体参数范围内,测量离子束损失的陀螺半径和俯仰角分布以及到达SLIP的总束损失。 SLIP表明,在相对较高的环形磁场强度(B t )下,大多数丢失的束离子由50°-60°的俯仰角组成。这些离子由一个与通量表面有较大偏差的过渡轨道组成。到达SLIP的束离子损失(Γ SLIP_SUM )取决于线平均电子密度的变化,其方式类似于由共同进入的中性束注入器产生的束离子成分的行为。随着真空中的磁轴位置(R ax )在B t 为0.90 T处向内移动,被束离子成分归一化的Γ SLIP_SUM 减小。在相对较低的B t 实验中,在R ax = 3.60 m时,不仅测量了具有过渡轨道的束离子,而且还测量了具有共轨轨道的束离子。在B t = 0.75 T时,对应于前进轨道的损耗域消失。随着B t

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