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On electron Bernstein waves in spherical tori

机译:球形托里电子中的伯恩斯坦波

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The high-beta operating regime of spherical tori (ST), such as in the National Spherical Torus Experiment (NSTX) and the Mega Amp Spherical Tokamak (MAST), makes them attractive fusion devices. For access to such high-beta regimes It is necessary to heat and to drive currents in ST plasmas. In the electron cyclotron range of frequencies, such plasmas are overdense to conventional electron cyclotron waves. However. in this frequency range, electron Bernstein waves (EBWs) offer an attractive alternative as they have no density cutoffs. EBWs can be excited in ST plasma by mode conversion of the extraordinary or the ordinary mode at the upper hybrid resonance. The applications of EBWs in STs range from plasma start-up and heating of the plasma to modifying and controlling its current profile. The controlling, of the current profile could provide better confinement as well as help suppress neoclassical tearing modes. The mode conversion to EBWs has been detailed in a, variety of papers. This paper deals with two particular topics that further quantify the role of EBWs in spherical tori. The first topic is oil the relevance of relativistic effects in describing the propagation and damping of EBWs. The second topic is on plasma current generation by EBWs.
机译:球形花托(ST)的高β工作状态,例如在国家球形圆环实验(NSTX)和Mega Amp球形托卡马克(MAST)中,使它们成为有吸引力的融合设备。为了获得这种高β值态,必须加热和驱动ST等离子体中的电流。在电子回旋加速器的频率范围内,这样的等离子体相对于常规电子回旋加速器波是密集的。然而。在此频率范围内,电子伯恩斯坦波(EBW)提供了一种有吸引力的替代方法,因为它们没有密度极限。 EBW可以在ST等离子体中通过上部混合共振中的非常规或普通模式进行模式转换而激发。 EBW在ST中的应用范围从等离子启动和等离子加热到修改和控制其电流分布图。当前轮廓的控制可以提供更好的限制,并有助于抑制新古典的撕裂模式。在各种论文中都详细介绍了如何将模式转换为EBW。本文涉及两个特定主题,这些主题进一步量化了EBW在球形花托中的作用。第一个主题是与相对论效应在描述EBW的传播和阻尼方面的相关性。第二个主题是关于电子束废物产生等离子体电流的问题。

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