English

Wave excitation by energetic ring-distributed electron beams in the solar corona

Plasma Physics 2020-03-18 v2 Solar and Stellar Astrophysics Space Physics

Abstract

We analyzed properties of waves excited by mildly relativistic electron beams propagating along magnetic field with a ring-shape perpendicular momentum distribution in neutral and current-free solar coronal plasmas. These plasmas are subject to both the beam and the electron cyclotron maser (ECM) instabilities driven by the positive momentum gradient of the ring-beam electron distribution in the directions parallel and perpendicular to the ambient magnetic field, respectively. To explore the related kinetic processes self-consistently, 2.5-dimensional fully kinetic particle-in-cell (PIC) simulations were carried out. To quantify excited wave properties in different coronal conditions, we investigated the dependence of their energy and polarization on the ring-beam electron density and magnetic field. In general, electrostatic waves dominate the energetics of waves and nonlinear waves are ubiquitous. In weakly magnetized plasmas, where the electron cyclotron frequency ωce\omega_{ce} is lower than the electron plasma frequency ωpe\omega_{pe}, it is difficult to produce escaping electromagnetic waves with frequency ω>ωpe\omega > \omega_{pe} and small refractive index ck/ω<1|c k / \omega| < 1 (kk and cc are the wavenumber and the light speed, respectively). Highly polarized and anisotropic escaping electromagnetic waves can, however, be effectively excited in strongly magnetized plasmas with ωce/ωpe1\omega_{ce}/\omega_{pe} \geq 1. The anisotropy of the energy, circular polarization degree (CPD), and spectrogram of these escaping electromagnetic waves strongly depend on the number density ratio of the ring-beam electrons to the background electrons. In particular, their CPDs can vary from left-handed to right-handed with the decrease of the ring-beam density, which may explain some observed properties of solar radio bursts (e.g., radio spikes) from the solar corona.

Keywords

Cite

@article{arxiv.1907.12958,
  title  = {Wave excitation by energetic ring-distributed electron beams in the solar corona},
  author = {X. Zhou and P. A. Muñoz and J. Büchner and S. Liu},
  journal= {arXiv preprint arXiv:1907.12958},
  year   = {2020}
}

Comments

ApJ, accepted