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首页> 外文期刊>Physics of plasmas >Amplitude modulation of quantum-ion-acoustic wavepackets in electron-positron-ion plasmas: Modulational instability, envelope modes, extreme waves
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Amplitude modulation of quantum-ion-acoustic wavepackets in electron-positron-ion plasmas: Modulational instability, envelope modes, extreme waves

机译:电子正电子离子等离子体中量子离子声波包的幅度调制:调制不稳定性,包络模式,极端波

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摘要

A semirelativistic fluid model is employed to describe the nonlinear amplitude modulation of low-frequency (ionic scale) electrostatic waves in an unmagnetized electron-positron-ion plasma. Electrons and positrons are assumed to be degenerated and inertialess, whereas ions are warm and classical. A multiscale perturbation method is used to derive a nonlinear Schrodinger equation for the envelope amplitude, based on which the occurrence of modulational instability is investigated in detail. Various types of localized ion acoustic excitations are shown to exist, in the form of either bright type envelope solitons (envelope pulses) or dark-type envelope solitons (voids, holes). The plasma configurational parameters (namely, the relativistic degeneracy parameter, the positron concentration, and the ionic temperature) are shown to affect the conditions for modulational instability significantly, in fact modifying the associated threshold as well as the instability growth rate. In particular, the relativistic degeneracy parameter leads to an enhancement of the modulational instability mechanism. Furthermore, the effect of different relevant plasma parameters on the characteristics (amplitude, width) of these envelope solitary structures is also presented in detail. Finally, the occurrence of extreme amplitude excitation (rogue waves) is also discussed briefly. Our results aim at elucidating the formation and dynamics of nonlinear electrostatic excitations in superdense astrophysical regimes. (C) 2015 AIP Publishing LLC.
机译:使用半相对论流体模型来描述未磁化的电子-正电子离子等离子体中低频(离子级)静电波的非线性幅度调制。假定电子和正电子是简并无惯性的,而离子则是温暖且经典的。采用多尺度摄动法导出包络幅度的非线性薛定inger方程,在此基础上详细研究了调制不稳定性的发生。各种类型的局域性离子声激发被显示为以亮型包络孤子(包络脉冲)或暗型包络孤子(空隙,孔)的形式存在。等离子体构型参数(即相对论简并性参数,正电子浓度和离子温度)显示出显着影响调制不稳定性的条件,实际上改变了相关的阈值和不稳定性增长率。特别地,相对论简并性参数导致调制不稳定性机制的增强。此外,还详细介绍了不同的相关等离子体参数对这些包络孤立结构的特性(幅度,宽度)的影响。最后,还简要讨论了极端幅度激励(无赖波)的发生。我们的研究结果旨在阐明超稠密天体物理学中非线性静电激发的形成和动力学。 (C)2015 AIP Publishing LLC。

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