Surface Flux Transport on the Sun

被引:0
|
作者
Anthony R. Yeates
Mark C. M. Cheung
Jie Jiang
Kristof Petrovay
Yi-Ming Wang
机构
[1] Durham University,Department of Mathematical Sciences
[2] CSIRO,School of Space and Environment
[3] Space & Astronomy,Department of Astronomy
[4] Beihang University,Space Science Division
[5] Eötvös Loránd University,undefined
[6] Naval Research Laboratory,undefined
来源
Space Science Reviews | 2023年 / 219卷
关键词
Sun; Solar magnetic field; Solar photosphere; Solar activity;
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摘要
We review the surface flux transport model for the evolution of magnetic flux patterns on the Sun’s surface. Our underlying motivation is to understand the model’s prediction of the polar field (or axial dipole) strength at the end of the solar cycle. The main focus is on the “classical” model: namely, steady axisymmetric profiles for differential rotation and meridional flow, and uniform supergranular diffusion. Nevertheless, the review concentrates on recent advances, notably in understanding the roles of transport parameters and – in particular – the source term. We also discuss the physical justification for the surface flux transport model, along with efforts to incorporate radial diffusion, and conclude by summarizing the main directions where researchers have moved beyond the classical model.
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