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首页> 外文期刊>The Astrophysical journal >Global Alfven wave heating of the magnetosphere of young stars
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Global Alfven wave heating of the magnetosphere of young stars

机译:全球Alfven波对年轻恒星磁层的加热

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Excitation of a global Alfven wave (GAW) is proposed as a viable mechanism to explain plasma heating in the magnetosphere of young stars. The wave and basic plasma parameters are compatible with the requirement that the dissipation length of GAWs be comparable to the distance between the shocked region at the star's surface and the truncation region in the accretion disk. A two-fluid magnetohydrodynamic plasma model is used in the analysis. A current-carrying filament along magnetic field lines acts as a waveguide for the GAWs. The current in the filament is driven by plasma waves along the magnetic field lines and/or by plasma crossing magnetic field lines in the truncated region of the disk of the accreting plasma. The conversion of a small fraction of the kinetic energy into GAW energy is sufficient to heat the plasma filament to observed temperatures. [References: 34]
机译:提出了对全球Alfven波(GAW)的激发作为解释年轻恒星磁层中等离子体加热的可行机制。波浪和基本等离子体参数符合GAW的耗散长度应与恒星表面的受激区域与吸积盘中的截断区域之间的距离相当的要求。分析中使用了两流体磁流体动力学等离子体模型。沿着磁场线的载流灯丝充当GAW的波导。灯丝中的电流由沿着磁场线的等离子波和/或由吸积等离子体盘的截断区域中的等离子横穿磁场线驱动。将动能的一小部分转换为GAW能量足以将等离子体灯丝加热到观察到的温度。 [参考:34]

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