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MAGNETOACOUSTIC HEATING AND STREAMING IN A PLASMA WITH FINITE ELECTRICAL CONDUCTIVITY

Abstract

Nonlinear effects of planar and quasi-planar magnetosound perturbations are discussed. Plasma is assumed to be an ideal gas with a finite electrical conductivity permeated by a magnetic field orthogonal to the trajectories of gas particles. The excitation of non-wave modes in the field of intense magnetoacoustic perturbations, i.e., magnetoacoustic heating and streaming, is discussed. The analysis includes a derivation of instantaneous dynamic equations independent of the spectrum and periodicity of sound.

Keywords:

plasma, nonlinear acoustics, magnetoacoustic heating

Details

Issue
Vol. 23 No. 1 (2019)
Section
Research article
Published
2019-03-31
DOI:
https://doi.org/10.17466/tq2019/23.1/e
Licencja:
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

Authors

ANNA PERELOMOVA

Gdansk University of Technology, Faculty of Applied Physics and Mathematics

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