Incompressible extended magnetohydrodynamics waves: Implications of electron inertia

Author:

Shorba Noura E.1ORCID,Mahmoud Abeer A.1ORCID,Abdelhamid Hamdi M.12ORCID

Affiliation:

1. Theoretical Physics Group, Physics Department, Faculty of Science, Mansoura University 1 , Mansoura 35516, Egypt

2. Physics Department, Faculty of Science, New Mansoura University 2 , New Mansoura, Egypt

Abstract

This paper explores plasma wave modes using the extended magnetohydrodynamics (XMHD) model, incorporating Hall drift and electron inertia effects. We utilize the geometric optics ansatz to study perturbed quantities, with a focus on incompressible systems. Our research concludes with the derivation of the dispersion relation for incompressible XMHD and the associated eigenvector solutions, offering new perspectives on plasma wave behavior under these extended scenarios. The dispersion relation shows distinct ion cyclotron and whistler wave branches, with characteristic saturation at the ion and electron gyrofrequencies, respectively. Comparisons between Hall MHD and XMHD demonstrate that XMHD provides a more accurate representation of plasma dynamics, especially at higher wave numbers, bridging the gap between simplified models and comprehensive two-fluid descriptions and smoothing out singularities present in Hall MHD solutions and capturing more physics of the full two-fluid model.

Publisher

AIP Publishing

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