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MHD waves in the solar north polar coronal hole

机译:太阳北极极孔中的MHD波

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摘要

The effects, hitherto not treated, of the temperature and the number density gradients, both in the parallel and the perpendicular direction to the magnetic field, of O VI ions, on the MHD wave propagation characteristics in the solar North Polar Coronal Hole are investigated. We investigate the magnetosonic wave propagation in a resistive MHD regime where only the thermal conduction is taken into account. Heat conduction across the magnetic field is treated in a non-classical approach wherein the heat is assumed to be conducted by the plasma waves emitted by ions and absorbed at a distance from the source by other ions. Anisotropic temperature and the number density distributions of O VI ions revealed the chaotic nature of MHD standing wave, especially near the plume/interplume lane borders. Attenuation length scales of the fast mode is shown not to be smoothly varying function of the radial distance from the Sun (© 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:研究了迄今为止尚未处理的O VI离子在平行于和垂直于磁场的方向上的温度和数量密度梯度对MHD波在太阳北极极冠孔中的传播特性的影响。我们研究了仅考虑热传导的电阻MHD机制中的磁声波传播。跨磁场的热传导采用非经典方法进行处理,其中假定热量是由离子发射的等离子波传导的,并且与源之间有一定距离地被其他离子吸收。各向异性温度和O VI离子的数量密度分布揭示了MHD驻波的混沌性质,尤其是在羽流/间流带边界附近。快速模式的衰减长度刻度显示为距太阳的径向距离的函数不是平稳变化的(©2010 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim)

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