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Current drive at plasma densities required for thermonuclear reactors

机译:热核反应堆所需的等离子体密度下的电流驱动

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Progress in thermonuclear fusion energy research based on deuterium plasmas magnetically confined in toroidal tokamak devices requires the development of efficient current drive methods. Previous experiments have shown that plasma current can be driven effectively by externally launched radio frequency power coupled to lower hybrid plasma waves. However, at the high plasma densities required for fusion power plants, the coupled radio frequency power does not penetrate into the plasma core, possibly because of strong wave interactions with the plasma edge. Here we show experiments performed on FTU (Frascati Tokamak Upgrade) based on theoretical predictions that nonlinear interactions diminish when the peripheral plasma electron temperature is high, allowing significant wave penetration at high density. The results show that the coupled radio frequency power can penetrate into high-density plasmas due to weaker plasma edge effects, thus extending the effective range of lower hybrid current drive towards the domain relevant for fusion reactors.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:基于磁限制在环形托卡马克装置中的氘等离子体的热核聚变能研究的进展要求开发有效的电流驱动方法。先前的实验表明,可以通过外部发射的射频功率耦合到较低的混合等离子体波来有效地驱动等离子体电流。但是,在聚变电站所需的高等离子体密度下,耦合的射频功率不会渗透到等离子体核中,这可能是由于与等离子体边缘的强波相互作用所致。在这里,我们显示了基于理论预测在FTU(Frascati Tokamak升级)上进行的实验,该理论预测是,当周围等离子体电子温度较高时,非线性相互作用会减弱,从而在高密度下会产生明显的波穿透。结果表明,由于较弱的等离子体边缘效应,耦合的射频功率可以穿透到高密度等离子体中,从而将较低的混合电流驱动的有效范围扩展到与聚变反应堆相关的领域。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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