From convective to stellar dynamos

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Abstract

Convectively driven dynamos with rotation generating magnetic fields on scales large compared with the scale of the turbulent eddies are being reviewed. It is argued that such fields can be understood as the result of an effect. Simulations in Cartesian domains show that such large-scale magnetic fields saturate on a time scale compatible with the resistive one, suggesting that the magnitude of the effect is here still constrained by approximate magnetic helicity conservation. It is argued that, in the absence of shear and/or any other known large-scale dynamo effects, these simulations prove the existence of turbulent -type dynamos. Finally, recent results are discussed in the context of solar and stellar dynamos. © International Astronomical Union 2011.

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Brandenburg, A., Kapyla, P. J., & Korpi, M. J. (2010). From convective to stellar dynamos. In Proceedings of the International Astronomical Union (Vol. 6, pp. 279–287). https://doi.org/10.1017/S1743921311017704

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