English

A firehose-like aperiodic instability of the counter-beaming electron plasmas

Plasma Physics 2020-10-05 v1 Space Physics

Abstract

Depending on the physical conditions involved the beam plasma systems may reveal new unstable regimes triggered by the wave instabilities of different nature. We show through linear theory and numerical simulations the existence of an aperiodic electromagnetic instability which solely develops and control the stability of two symmetric plasma populations counter-moving along the regular magnetic field with a relative drift, vdv_d, small enough to not exceed the particle thermal speed, αe\alpha_e. Emerging at highly oblique angles this mode resembles properties of the aperiodic firehose instability driven by temperature anisotropy. The high growth rates achieved with increasing the relative drift or/and decreasing the plasma beta parameter lead to significant saturation levels of the fluctuating magnetic field power, which explain the relative fast relaxation of electrons. For vd>αev_d>\alpha_e this instability can coexist with the electrostatic two-stream instability, dominating the long-term dynamics of the plasma as soon as vdv_d has relaxed to values smaller than the thermal speed.

Keywords

Cite

@article{arxiv.2003.08245,
  title  = {A firehose-like aperiodic instability of the counter-beaming electron plasmas},
  author = {R. A. López and M. Lazar and S. M. Shaaban and S. Poedts and P. S. Moya},
  journal= {arXiv preprint arXiv:2003.08245},
  year   = {2020}
}

Comments

Submitted to: Plasma Phys. Control. Fusion on Jan. 31 2020