Dipolar dynamos in stratified systems
R. Raynaud, L. Petitdemange, E. Dormy

TL;DR
This study systematically investigates how density stratification influences dipolar dynamo solutions in stratified systems, revealing that stratification affects the stability domain but does not fundamentally alter the dynamo mechanisms.
Contribution
It provides a detailed parameter study showing the effects of density stratification on dipolar dynamo stability, clarifying previous conflicting results from different models.
Findings
Density stratification influences the stability domain of dipolar dynamos.
The critical magnetic Reynolds number remains nearly unchanged with increased stratification.
Loss of dipolar solutions may be due to parameter space bias rather than dynamo mechanism changes.
Abstract
Observations of low-mass stars reveal a variety of magnetic field topologies ranging from large-scale, axial dipoles to more complex magnetic fields. At the same time, three-dimensional spherical simulations of convectively driven dynamos reproduce a similar diversity, which is commonly obtained either with Boussinesq models or with more realistic models based on the anelastic approximation, which take into account the variation of the density with depth throughout the convection zone. Nevertheless, a conclusion from different anelastic studies is that dipolar solutions seem more difficult to obtain as soon as substantial stratifications are considered. In this paper, we aim at clarifying this point by investigating in more detail the influence of the density stratification on dipolar dynamos. To that end, we rely on a systematic parameter study that allows us to clearly follow the…
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Taxonomy
TopicsGeomagnetism and Paleomagnetism Studies · Magnetic and Electromagnetic Effects · Solar and Space Plasma Dynamics
