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Whistler wave propagation and interplay between electron inertia and Larmor radius effects

机译:惠斯勒波传播和电子惯性与拉马尔半径效应之间的相互作用

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The influence of Larmor radius effects on the propagation of whistler waves is investigated experimentally in laboratory plasma. The waves are excited using a loop antenna of diameter less than the electron skin depth, the natural scale length in this regime. In an earlier experiment [G. Joshi et al., Phys. Plasmas 24, 122110 (2017)], it was shown that such waves assume an elongated shape with perpendicular dimensions of the order of skin depth. In the present work, we show that wave propagation is significantly modified when the external guiding magnetic field is decreased. The wave spreads in the perpendicular direction in spite of starting of as an elongated whistler due to electron inertia effects. In the near region, the antenna field becomes dominant even forming null points, with the physical processes taking shape and wave still being guided by the net background magnetic field. However, the feeble external magnetic field in the region away from the antenna is unable to guide the wave any further and the wave spreads. In spite of a large current pulse, the wave remains linear (Delta B/B-0 <= 1). The observed results are attributed to the interplay between electron inertia and finite Larmor radius effects and are explained in terms of a modified physical model. Published under license by AIP Publishing.
机译:在实验室等离子体中实验研究了大陆半径对吹波的传播的影响。使用直径小于电子皮肤深度的环形天线,对该制度的自然刻度长度进行激发。在早期的实验中[G. Joshi等人。,phy。示出了等离子体24,12110(2017)],示出这种波采用细长形状,垂直尺寸的呈现肤浅的垂直尺寸。在本作工作中,我们表明当外部引导磁场减小时,显着修改波传播。尽管由于电子惯性效应而作为细长的吹口哨开始,波在垂直方向上蔓延。在近区域中,天线场变得优势甚至形成空点,其具有依赖于网背景磁场的形状和波的物理过程。然而,远离天线的区域中的虚弱外部磁场无法进一步引导波并且波扩散。尽管电流脉冲大,波保持线性(Delta B / B-0 <= 1)。观察结果归因于电子惯性和有限的大肠杆半径效应之间的相互作用,并以修改的物理模型解释。通过AIP发布在许可证下发布。

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