Multi-fluid approach to high-frequency waves in plasmas: I. Small-amplitude regime in fully ionized medium
arXiv:1609.06190 · doi:10.3847/0004-637X/832/2/101
Abstract
Ideal MHD provides an accurate description of low-frequency Alfvén waves in fully ionized plasmas. However, higher frequency waves in many plasmas of the solar atmosphere cannot be correctly described by ideal MHD and a more accurate model is required. Here, we study the properties of small-amplitude incompressible perturbations in both the low and the high frequency ranges in plasmas composed of several ionized species. We use a multi-fluid approach and take into account the effects of collisions between ions and the inclusion of Hall's term in the induction equation. Through the analysis of the corresponding dispersion relations and numerical simulations we check that at high frequencies ions of different species are not as strongly coupled as in the low frequency limit. Hence, they cannot be treated as a single fluid. In addition, elastic collisions between the distinct ionized species are not negligible for high frequency waves since an appreciable damping is obtained. Furthermore, Coulomb collisions between ions remove the cyclotron resonances and the strict cut-off regions that are present when collisions are not taken into account. The implications of these results for the modelling of high-frequency waves in solar plasmas are discussed.
29 pages, 15 figures. Accepted for publication in The Astrophysical Journal
References in corpus (12)
- Alfven Waves in the Lower Solar Atmosphere
- A Contemporary View of Coronal Heating
- Hall magnetohydrodynamics of partially ionized plasmas
- Fluid description of multi-component solar partially ionized plasma
- Overdamped Alfven waves due to ion-neutral collisions in the solar chromosphere
- Conditions for Photospherically Driven Alfvenic Oscillations to Heat the Solar Chromosphere by Pedersen Current Dissipation
- Linear high-resolution schemes for hyperbolic conservation laws: TVB numerical evidence
- On the support of neutrals against gravity in solar prominences
- Effects of non-WKB Alfven waves on a multicomponent solar wind with differential ion flow
- Effects of alpha particles on the angular momentum loss from the Sun
- Surface Wave Propagation in non--ideal plasmas
- Angular momentum transport in a multicomponent solar wind with differentially flowing, thermally anisotropic ions