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首页> 外文期刊>The European physical journal. Applied physics >Loss of plasma scaling with magnetic field, pressure and discharge current in a CUSP confined plasma
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Loss of plasma scaling with magnetic field, pressure and discharge current in a CUSP confined plasma

机译:CUSP受限等离子体中随着磁场,压力和放电电流而导致的等离子体结垢损失

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摘要

The confinement properties of a low beta argon discharge plasma in a spindle cusp magnetic field was investigated. Plasma was produced by ionisation collisions by the electrons which were produced by thermionic emission of electrons. The central problem involved with plasma confinement by a cusped magnetic field is the loss of particles along the flux lines. Electron and ion leak widths were studied in the ring and point cusps and measured over a range of magnetic field strengths (B), neutral pressures (P) and discharge currents (I_d). It was found that the leak width was reduced with increase in I_d and B. The ion leak widths were found to be larger than the electron leak widths. The normalised effect of magnetic field and pressure on ion and electron leak widths in cusps are reported, compared and discussed. The dependence of electron and ion leak widths on plasma densities were also studied. At very low pressures, high plasma densities and high magnetic field strengths, a quasineutrality condition was attained.
机译:研究了主轴尖端磁场中低β氩放电等离子体的约束性质。等离子体是由电子的电离碰撞产生的,而电子是由电子的热电子发射产生的。通过尖峰磁场限制等离子体的主要问题是沿着磁通线的颗粒损失。电子和离子泄漏宽度在环形和尖状尖端处进行研究,并在一定范围的磁场强度(B),中性压力(P)和放电电流(I_d)范围内进行测量。发现随着I_d和B的增加,泄漏宽度减小。发现离子泄漏宽度大于电子泄漏宽度。报告,比较和讨论了磁场和压力对尖头离子和电子泄漏宽度的归一化影响。还研究了电子和离子泄漏宽度对等离子体密度的依赖性。在非常低的压力,高的等离子体密度和高的磁场强度下,达到了准中性条件。

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