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Effects of finite electron temperature on gradient drift instabilities in partially magnetized plasmas

机译:有限电子温度对部分磁化等离子体梯度漂移不稳定性的影响

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摘要

The gradient-drift instabilities of partially magnetized plasmas in plasma devices with crossed electric and magnetic fields are investigated in the framework of the two-fluid model with finite electron temperature in an inhomogeneous magnetic field. The finite electron Larmor radius (FLR) effects are also included via the gyroviscosity tensor taking into account the magnetic field gradient. This model correctly describes the electron dynamics for k(perpendicular to)rho(e) 1 in the sense of Pade approximants (here, k(perpendicular to) and rho(e) are the wavenumber perpendicular to the magnetic field and the electron Larmor radius, respectively). The local dispersion relation for electrostatic plasma perturbations with the frequency in the range between the ion and electron cyclotron frequencies and propagating strictly perpendicular to the magnetic field is derived. The dispersion relation includes the effects of the equilibrium E x B electron current, finite ion velocity, electron inertia, electron FLR, magnetic field gradients, and Debye length effects. The necessary and sufficient condition of stability is derived, and the stability boundary is found. It is shown that, in general, the electron inertia and FLR effects stabilize the short-wavelength perturbations. In some cases, such effects completely suppress the high-frequency short-wavelength modes so that only the long-wavelength low-frequency (with respect to the lower-hybrid frequency) modes remain unstable. Published by AIP Publishing.
机译:在非均匀磁场中具有有限电子温度的双流体模型的框架中研究了具有交叉电场的等离子体器件中部分磁化等离子体装置的梯度漂移稳定性。考虑到磁场梯度,还通过Gyrocisce Tensor提供有限电子大径半径(FLR)效果。该模型正确地描述了K(垂直于)rho(e)&gt的电子动力学。 1在梯度近似的意义上(这里,K(垂直于)和rho(e)是垂直于磁场和电子传道人半径的波数。导出了静电等离子体扰动的局部分散关系,与离子和电子回旋频率之间的范围内的频率和严格垂直于磁场传播的频率。分散关系包括平衡E X B电子电流,有限离子速度,电子惯性,电子FLR,磁场梯度和德义长度效应的影响。衍生必要和充分的稳定性,并且发现稳定性边界。结果表明,通常,电子惯性和FLR效应稳定短波长扰动。在一些情况下,这种效果完全抑制了高频短波长模式,使得只有长波长低频(相对于较低混合频率)模式保持不稳定。通过AIP发布发布。

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