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Beam driven temporal growth and spatial amplification of electrostatic waves in a partially spin polarized degenerate magnetized plasma

机译:光束驱动的时间生长和静电波中的静电波在部分自旋极化偏振磁化等离子体中的静电波

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摘要

The temporal growth and spatial amplification of electrostatic waves due to the interaction of an electron beam with a partially spin polarized degenerate magnetized plasma are studied. Using Fourier analysis, a generalized linear dispersion relation is derived for parallel propagating electrostatic waves in the presence of electron spin polarization. The electron spin polarization gives birth to a new spin-dependent wave (spin electron acoustic wave) in the real wave spectrum. Furthermore, increasing spin polarization reduces the temporal growth rate of the unstable mode. Regarding spatial amplification (magnitude of the imaginary wave number), it is found that spin polarization significantly affects the magnitude of both the real and the imaginary wave numbers. Additionally, how the various other parameters such as electron beam density, beam thermal speed, and streaming speed of the beam electron influence the temporal growth and spatial rates is also discussed. These effects would have a strong bearing on instability phenomena in the degenerate metallic and semiconductor plasmas and in astrophysical plasmas. Published by AIP Publishing.
机译:研究了静电波引起的静电波的时空扩增是研究了具有部分自旋极化的退化磁化等离子体的电子束的相互作用。使用傅立叶分析,导出广义线性色散关系,用于在存在电子自旋极化的情况下并联传播静电波。电子自旋极化在真实波谱中赋予了新的自旋依赖波(自旋电子声波)。此外,增加自旋极化降低了不稳定模式的时间生长速率。关于空间放大(虚波数的大小),发现自旋极化显着影响真实和假想波数的大小。另外,还讨论了光束电子的各种其他参数,例如电子束密度,光束热速度和流速度的流频率和空间增速。这些效果在退化金属和半导体等离子体中的不稳定现象以及天体物理等离子体中具有强烈的轴承。通过AIP发布发布。

著录项

  • 来源
    《Physics of plasmas》 |2017年第11期|共6页
  • 作者

    Iqbal Z.; Murtaza G.;

  • 作者单位

    GC Univ Lahore Dept Phys Katchery Rd Lahore 54000 Pakistan;

    GC Univ Lahore Dept Phys Katchery Rd Lahore 54000 Pakistan;

  • 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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