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Improved GAMMA 10 tandem mirror confinement in high density plasma

机译:高密度等离子体中改进的GAMMA 10串联镜限制

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摘要

GAMMA 10 experiments have advanced in high density experiments after the last IAEA fusion energy conference in 2000 where we reported the production of the high density plasma through use of ion cyclotron range of frequency heating at a high harmonic frequency and neutral beam injection in the anchor cells. However, the diamagnetic signal of the plasma decreased when electron cyclotron resonance heating was applied for the potential formation. Recently a high density plasma has been obtained without degradation of the diamagnetic signal and with much improved reproducibility than before. The high density plasma was attained through adjustment of the spacing of the conducting plates installed in the anchor transition regions. The potential confinement of the plasma has been extensively studied. Dependences of the ion confinement time, ion-energy confinement time and plasma confining potential on plasma density were obtained for the first time in the high density region up to a density of 4 x 10~(18) m~(-3).
机译:在2000年上一次IAEA聚变能会议之后,GAMMA 10实验在高密度实验中取得了进展,在那次会议上,我们报道了通过使用离子回旋加速器在高谐波频率下加热频率和在锚定单元中注入中性束来生产高密度等离子体。但是,当将电子回旋共振加热应用于电势形成时,等离子体的反磁信号减小。最近,已经获得了高密度等离子体,而抗磁信号没有退化,并且与以前相比,再现性大大提高。通过调节安装在锚固过渡区域中的导电板的间距来获得高密度等离子体。等离子体的潜在限制已被广泛研究。在高密度区域内首次获得了离子限制时间,离子能量限制时间和等离子体限制电势与等离子体密度的关系,密度高达4 x 10〜(18)m〜(-3)。

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