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Intermittent strong transport of the quasi-adiabatic plasma state

机译:间歇性强大的准防扩散等离子体状态

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The dynamics of the fluctuating electrostatic potential and the plasma density couched in the resistive-drift model at nearly adiabatic state are simulated. The linear modes are unstable if the phase difference between the potential and the density are positive. Exponential growth of the random small perturbations slows down due to the nonlinear E?×?B flows that work in two ways. They regulate the strength of the fluctuations by transferring the energy from the energy-producing scale to neighboring scales and reduce the cross phase at the same time. During quasi-steady relaxation sporadic appearance of very strong turbulent particle flux is observed that is characterized by the flat energy spectrum and the broad secondary peak in the mesoscale of the order of the gyro-radius. Such boost of the transport is found to be caused by presence of relatively large cross phase as the E?×?B flows are not effective in cancelling out the cross phase.
机译:模拟了静电电位的动态和在几乎绝热状态下在电阻漂移模型中铺设的等离子体密度。如果电位和密度之间的相位差是肯定的,则线性模式是不稳定的。随机小扰动的指数增长由于非线性E?×××B以两种方式运行而减慢。它们通过将能量从能量产生的尺度转移到相邻的尺度来调节波动的强度,并同时减少交叉阶段。在准稳态松弛期间,观察到非常强大的湍流颗粒通量的散热性外观,其特征在于陀螺仪的阶段尺度的扁平能谱和宽二次峰。发现这种转运的增加是由于E?×B流动在抵消交叉阶段时不必有效地引起的相对大的交叉阶段。

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