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Envelope solitons associated with electromagnetic waves in a magnetized pair plasma

机译:磁化对等离子体中与电磁波相关的包络孤子

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摘要

The amplitude modulation of magnetic field-aligned circularly polarized electromagnetic (CPEM) waves in a magnetized pair plasma is reexamined. The nonlinear frequency shifts include the effects of the radiation pressure driven density and compressional magnetic field perturbations as well as relativistic particle mass variations. The dynamics of the modulated CPEM wave packets is governed by a nonlinear Schrodinger equation, which has attractive and repulsive interaction potentials for fast and slow CPEM waves. The modulational stability of a constant amplitude CPEM wave is studied by deriving a nonlinear dispersion from the cubic Schrodinger equation. The fast (slow) CPEM mode is modulationally unstable (stable). Possible stationary amplitude solutions of the modulated fast (slow) CPEM mode can be represented in the form of bright and dark/gray envelope electromagnetic soliton structures. Localized envelope excitations can be associated with the microstructures in pulsar magnetospheres and in laboratory pair magnetoplasmas. (C) 2005 American Institute of Physics.
机译:重新检查磁化对等离子体中磁场对准的圆极化电磁(CPEM)波的振幅调制。非线性频移包括辐射压力驱动的密度和压缩磁场扰动以及相对论粒子质量变化的影响。调制的CPEM波包的动力学受非线性Schrodinger方程控制,该方程对于快速和慢速CPEM波具有吸引和排斥的相互作用势。通过从三次薛定inger方程推导非线性色散,研究了恒定振幅CPEM波的调制稳定性。快速(慢速)CPEM模式在调制上不稳定(稳定)。调制的快速(慢速)CPEM模式的可能的固定振幅解可以以亮和暗/灰色包络电磁孤子结构的形式表示。局部包络激发可以与脉冲星磁层和实验室对磁浆中的微结构相关。 (C)2005美国物理研究所。

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