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首页> 外文期刊>Physics of plasmas >Whistler envelope solitons. I. Dynamics in inhomogeneous plasmas
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Whistler envelope solitons. I. Dynamics in inhomogeneous plasmas

机译:惠斯勒信封孤子。 I.非均相等离子体中的动态

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摘要

A self-consistent Hamiltonian model based on equations describing the coupled dynamics of whistler and lower frequency waves in inhomogeneous plasmas is built. On this basis, different aspects of whistler turbulence are studied, concerning mainly the development of modulational instabilities and the dynamics of envelope solitons in irregular plasmas. Numerical simulations based on the model show that modulational instabilities can lead to the generation of a beating of stable nonlinear whistlers propagating with a speed near the group velocity. The whistler envelope soliton is determined analytically, and its propagation in plasmas presenting random density fluctuations and weakly irregular density structures of different scales and amplitudes is studied, showing that the envelope is very weakly affected by these inhomogeneities, whereas the wavelengths and the amplitudes of the phase oscillations strongly vary. Moreover, simulations show for the first time that two whistler solitons moving with different but close velocities and colliding one with the other remain unchanged after this collision, independently of their initial amplitudes and velocities. Finally, we study the dynamics of sonic whistler envelope solitons and show that the propagation of their lower frequency perturbation is governed by a KdV-type equation. Published by AIP Publishing.
机译:基于描述Whistler和非均匀等离子体较低频率波的耦合动力学方程的自相一致哈密顿模型。在此基础上,哨声湍流的不同方面进行了研究,主要涉及不稳定性modulational和不规则的等离子体信封孤子的发展动态。基于该模型显示,modulational不稳定性可能导致非线性稳定口哨与附近的群速度的速度传播的跳动产生数值模拟。哨声信封孤子分析测定,其在等离子体中呈现随机密度波动和不同尺度和幅度的弱不规则密度结构传播进行了研究,表明该包络非常弱受这些不均匀性,而波长和的振幅相振荡强烈变化。此外,模拟显示首次两个哨声孤子不同但接近的速度移动,并碰撞一个与其他该碰撞后保持不变,独立的它们的初始的幅度和速度。最后,我们研究的声哨声信封孤子,并表明其较低的频率扰动的传播是由KDV型方程控制的动态。通过AIP发布发布。

著录项

  • 来源
    《Physics of plasmas》 |2018年第10期|共15页
  • 作者

    Krafft C.; Volokitin A. S.;

  • 作者单位

    UPMC Univ Paris 06 Univ Paris Sud Observ Paris Sorbonne Univ PSL Res Univ Lab Phys Plasmas CNRS Ecole Polytech Univ Paris S F-91128 Palaiseau France;

    IZMIRAN Moscow 142190 Russia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

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