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Structure of nonlinear whistlers moving through plasma at an angle to the magnetic field

机译:非线性吹口哨的结构,其与磁场成一定角度穿过等离子体

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The paper presents solutions of two-fluid magnetic hydrodynamics equations describing small-scale fast magnetosonic stable waves — nonlinear whist-lers moving in a cold magnetized plasma at an angle α to the external magnetic field. At the fixed angle α, the Alfvén Mach number of the whistlers has a narrow range of allowed values. It has been found that when passing from extremely small Mach numbers to ex-tremely large ones, amplitudes and spatial structure of wave velocity components and whistler magnetic field change significantly. The range of angles of the motion direction of whistlers with respect to direction of the the external magnetic field vector is determined. Within this range, the obtained approximate analytical and numerical solutions are in satisfactory agreement.
机译:本文提供了描述小规模快速磁声稳定波的双流体磁流体动力学方程式的解决方案-非线性啸叫声在冷磁化等离子体中以与外部磁场成角度α的方式运动。在固定角度α时,哨子的Alfvén马赫数在允许值范围内。已经发现,当从极小的马赫数变为极大的马赫数时,波速分量的振幅和空间结构以及啸叫磁场会发生显着变化。确定吹口哨的运动方向相对于外部磁场矢量的方向的角度范围。在此范围内,获得的近似分析和数值解令人满意。

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