Use of radio-frequency waves in the formation of transport barrier in a stellarator

S. Sen, A. Fukuyama, A. Punjabi, S. Ghosal
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Abstract

The effect of radio-frequency (RF) waves on negative-energy perturbations (NEPs) is investigated in a straight stellarator within the framework of the Maxwell and drift kinetic theories. It is found that the ponderomotive force and its radial gradient can modify the conditions for the existence of perpendicular NEPs, which are found to be the most important perturbations. It is shown that, if the profile of the RF field energy is properly chosen, the RF wave will have a stabilizing effect on the electron NEPs so that the fraction of active particles associated with the perpendicular NEPs decreases from the plasma interior to the edge. This result might have important implications with respect to whether the use of RF waves can create a transport barrier to reduce the loss of particles and energy in a stellarator.
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利用射频波在仿星器中形成传输屏障
在麦克斯韦和漂移动力学理论的框架下,研究了直星器中射频波对负能量微扰(NEPs)的影响。发现有质动势及其径向梯度可以改变垂直新粒子存在的条件,这是最重要的扰动。结果表明,如果选择合适的射频场能量分布,射频波将对电子NEPs产生稳定作用,使与垂直NEPs相关的活性粒子的比例从等离子体内部到边缘减小。这一结果可能对使用射频波是否能产生传输屏障以减少仿星器中粒子和能量的损失具有重要意义。
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Plasma Devices and Operations
Plasma Devices and Operations 物理-核科学技术
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