Using two distinct simulation codes that respectively apply semi-implicit and fully explicit schemes, we perform calculations of a 2D kinematic Babcock-Leighton type flux-transport dynamo with Chatterjee et al.'s parameter settings. We show that their solutions are diffusion-dominated, rather than circulation-dominated as their title implies. We also have been unable to reproduce several properties of their dynamo solutions, namely we obtain a much faster cycle with ∼4 times shorter period than theirs, with highly overlapping cycles; a polar field value of ∼2 kG if one has to produce a ∼100 kG toroidal field at convection zone base; and quadrupolar parity as opposed to Chatterjee et al.'s dipolar parity solutions. © ESO 2005.
CITATION STYLE
Dikpati, M., Rempel, M., Oilman, P. A., & MacGregor, K. B. (2005, July). Comments on “Full-sphere simulations of circulation-dominated solar dynamo: Exploring the parity issue.” Astronomy and Astrophysics. https://doi.org/10.1051/0004-6361:20042435
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