论文标题

电子等离子体与SmartEx-C中纯粹的环形磁场的前所未有的限制时间

Unprecedented confinement time of electron plasmas with a purely toroidal magnetic field in SMARTEX-C

论文作者

Lachhvani, Lavkesh, Pahari, Sambaran, Goswami, Rajiv, Yeole, Yogesh G., Chattopadhyay, Prabal K.

论文摘要

用纯环形磁场捕获的电子等离子体的限制时间已在小长宽比中扩展到$ \ sim 100 $ s($ r_ {o}/{a} \ sim {1.59} $,$ r_O $,$ r_O $和$ a $分别是设备的主要和次要radius,分别为torus)。它超过了先前的记录近两个数量级。寿命是根据从壁的各个部分启动的线性二极管模式的频率缩放来估计的,这些模式也用于模式诊断。在存在稳态磁场的情况下,随着中性压力的降低,限制可大大改善。另外,限制被认为与磁场无关,磁场是磁性抽水传输(MPT)理论的区别特征。由于MPT预测了我们的实验和MPT估计值之间对限制比较的上限。

Confinement time of electron plasmas trapped using a purely toroidal magnetic field has been extended to $\sim 100$ s in a small aspect ratio ($R_{o}/{a} \sim {1.59}$, $R_o$ and $a$ are device major and minor radius, respectively), partial torus. It surpasses the previous record by nearly two orders of magnitude. Lifetime is estimated from the frequency scaling of the linear diocotron mode launched from sections of the wall, that are also used for mode diagnostics. Confinement improves enormously with reduction in neutral pressure in the presence of a steady state magnetic field. In addition, confinement is seen to be independent of the magnetic field, a distinguishing feature of Magnetic Pumping Transport (MPT) theory. Since MPT predicts an upper limit to confinement comparisons have been made between our experiments and MPT estimates.

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