等离子体诊断、静电约束和光学发射光谱表征的物理学和应用

Péricles Lopes SantAna, Ana Catarina Freire, M. Odstrčil, R. Jaspers
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引用次数: 0

摘要

本文利用氩等离子体完成了在核聚变和等离子体诊断领域的补充实验。通过这种方式,完成了三个尝试来描述探针的物理特性,(等离子体鞘),电击穿和光谱辅助下的静电约束。在第一次尝试中,Langmuir探针的目的是确定电子密度、氩等离子体温度和特征电流-电压曲线(i - v)。(ii)在第二次尝试中,获得了Paschen曲线,以证明确定气体中电击穿的效果,然后,有可能确定击穿电压。(三)最后一次尝试,采用发射光谱法对静电约束进行分析。熔断器被认为是磁约束的一种简单的替代方法。虽然从基本的角度来看,这种说法是不成立的,但有趣的物理方面出现了,其中一些在托卡马克也有对应的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physics and application of plasma diagnostics, electrostatic confinement and characterization by optical emission spectroscopy
In this work, supplementary experiments were accomplished by using argon plasmas for studying in the field of nuclear fusion and plasma diagnostics. In this way, three attempts were accomplished to describe the physics of the probes, (plasma sheath), electrical breakdown and electro-static confinement assisted by Spectroscopy. (i) In the first attempt, Langmuir probes was aimed either to determine the electron density, temperature of the argon plasma, and the characteristic Current-Voltage curve (I–V). (ii) In the second attempt, the Paschen curve was acquired to demonstrate the effects that determine electrical breakdown in a gas, and then, it was possible determine the breakdown voltage. (iii) The last attempt, the electro-static confinement was analyzed using optical emission spectroscopy. The fusor has been suggested as a simple alternative to magnetic confinement. Although on fundamental grounds this claim cannot be supported, interesting physics aspects appeared, some of which have their counterpart in tokamak as well.
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