DOAJ Open Access 2024

Plasma wave propagation conditions analysis using the warm multi-fluid model

Huasheng Xie Haojie Ma Yukun Bai

Abstrak

Although an accurate description of wave propagation and absorption in plasmas requires complicated full-wave solutions or kinetic simulations, local dispersion analysis can still be helpful to capture the main physics of wave properties. Plasma wave propagation conditions or accessibility informs whether a wave can propagate to a region, which usually depends on the wave frequency, wave vector, the local plasma density, and magnetic field. We demonstrate a warm multi-fluid eigenvalue model and a matrix approach to rapidly calculate plasma wave accessibility diagrams, where thermal effects are also included via an isotropic pressure term. All cold plasma waves, from high-frequency electron cyclotron waves, intermediate-frequency lower hybrid waves, to low-frequency ion cyclotron waves, are presented. By comparing with the kinetic model, it is interesting to find that the warm multi-fluid model, though incapable of reproducing the Bernstein modes, can provide a quick way to determine whether thermal effects are important.

Penulis (3)

H

Huasheng Xie

H

Haojie Ma

Y

Yukun Bai

Format Sitasi

Xie, H., Ma, H., Bai, Y. (2024). Plasma wave propagation conditions analysis using the warm multi-fluid model. https://doi.org/10.1016/j.fpp.2024.100050

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Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.1016/j.fpp.2024.100050
Akses
Open Access ✓