A Solitary Wave of a Relativistic Magnetosonic Wave Propagating Perpendicularly to a Magnetic Field

Y. Ohsawa
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引用次数: 50

Abstract

A relativistic theory for a nonlinear magnetosonic wave propagating perpendicularly to a magnetic field is developed. On the basis of a relativistic two‐fluid cold plasma model, the structure of a stationary magnetosonic wave is studied. Relativistic effects become important for the parameter regime ωce/ωpe≳1, because the fluid electron velocity perpendicular to a magnetic field and parallel to the wave front takes values close to the speed of light for such plasma parameters. It is found that there exists a stationary solitary wave solution even in the relativistic model. Some properties of the solitary wave, such as the soliton width, are discussed.
垂直于磁场传播的相对论磁声波的孤波
建立了垂直于磁场传播的非线性磁声波的相对论性理论。在相对论双流体冷等离子体模型的基础上,研究了静止磁声波的结构。相对论效应成为重要的参数政权ωce /ωpe≳1,因为液体电子速度垂直于磁场和波前需要平行值接近光速的等离子体参数。发现即使在相对论模型中也存在平稳孤立波解。讨论了孤立波的一些性质,如孤子宽度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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