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First Observations of Partially Neutralized and Quasineutral Plasmas in the Columbia Non-Neutral Torus

机译:哥伦比亚非中性圆环部分中和的中性血浆的初步观察

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The Columbia Non-neutral Torus (CNT) is a stellarator designed to study pure electron, partially neutralized and positron-electron plasmas. CNT usually operates with electron rich plasmas (with negligible ion density) [1]. The accumulation of ions alters the equilibrium of electron plasmas in CNT and a global instability has been observed when the ion fraction exceeds 10%. A characterization of this instability is presented in [2], analyzing its parameter dependence and spatial structure (non-resonant with rational surfaces). A segmented conducting mesh has been installed to impose the electrostatic boundary condition at the plasma edge. Results after the installation of the conducting boundary confirm the presence of an instability in electron rich plasmas with a finite ion content. A new set of experiments is currently underway studying plasmas of arbitrary degree of neutralization, ranging from pure electron to quasineutral plasmas. Basic observations show that the plasma potential decouples from the emitter bias when we increase the degree of neutralization of our plasmas. Partially neutralized plasmas are also characterized by multiple mode behavior with dominant frequencies between 20 and 200 kHz. When the plasma becomes quasineutral, it reverts to single mode behavior (2 - 18 kHz). The first results on partially neutralized and quasineutral plasmas in CNT are reported on here (© 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:哥伦比亚非中性圆环(CNT)是设计用于研究纯电子,部分中和的正电子等离子体的恒星发生器。 CNT通常在富含电子的等离子体(可忽略的离子密度)下运行[1]。离子的积累改变了CNT中电子等离子体的平衡,并且当离子分数超过10%时已观察到全局不稳定性。在[2]中描述了这种不稳定性的特征,分析了它的参数依赖性和空间结构(与有理表面不共振)。已安装分段导电网,以在等离子体边缘施加静电边界条件。安装导电边界后的结果证实,在离子含量有限的富电子等离子体中存在不稳定性。目前正在进行一组新的实验,研究任意中和度的等离子体,范围从纯电子到准中性等离子体。基本观察表明,当我们增加等离子体的中和度时,等离子体电势与发射极偏置解耦。部分中和的等离子体的特征还在于主频在20至200 kHz之间的多模行为。当等离子体变为准中性时,它将恢复为单模行为(2-18 kHz)。此处报道了CNT中部分中和的等离子体的第一个结果(©2010 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim)

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