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Nonlocal theory and turbulence of the sheath-driven electron temperature gradient instability

机译:鞘层驱动电子温度梯度不稳定性的非局域理论和湍流

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摘要

A nonlocal linear theory of the sheath-driven delT(e) mode for a uniformly increasing temperature profile that properly includes effects of a varying Larmor radius has been developed. This theory was used to verify nonlinear fluid simulations of this mode in a two-dimensional slab. The nonlinear evolution of the mode was found to depend not only upon the growth rate, but also upon the variation of the ExB drift over the extent of the radial eigenmode. When the difference in the ExB drift frequency exceeded the growth rate, the linear mode structure was distorted at early times leading to a mixing of the vortices, which allowed a rapid nonlinear growth of the longer wavelengths. When the mode grew faster than any tilting of the vortices, the fluctuations remained coherent and localized for many growth times. Not until the fluctuations grew to very large amplitude (similar to 50%) did the longer wavelength modes grow and contribute to the turbulence. By comparing the analytical growth rate and the variation of the equilibrium drift frequency, a condition that predicts which state the mode will evolve to was derived in terms of physical parameters of the system. (C) 2001 American Institute of Physics. [References: 9]
机译:已经开发出鞘驱动的delT(e)模式的非局部线性理论,用于均匀地增加温度曲线,该温度曲线适当地包括变化的拉莫尔半径的影响。该理论用于验证二维平板中此模式的非线性流体模拟。发现该模式的非线性演化不仅取决于生长速率,而且还取决于ExB漂移在径向本征模式范围内的变化。当ExB漂移频率的差异超过增长率时,线性模式结构会在早期失真,从而导致涡流混合,从而允许较长波长的快速非线性增长。当模式的增长快于涡旋的任何倾斜时,波动在许多增长时间内都保持连贯和局部化。直到波动增加到非常大的幅度(大约50%)时,较长的波长模式才会增长并助长了湍流。通过比较分析增长率和平衡漂移频率的变化,根据系统的物理参数得出了一种预测模式将演变为哪种状态的条件。 (C)2001美国物理研究所。 [参考:9]

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