从观测和平均场动力学角度看太阳极面磁场生成率

IF 2.7 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Valery Pipin
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引用次数: 0

摘要

为了估算太阳周期23和24中大尺度径向磁场的半球磁通生成率,我们使用了太阳磁场的光球观测数据和平均场动力模型的结果。动力学模型的结果表明,径向湍流扩散对大尺度极磁场的表面演化和半球磁通生成率有很大影响。为了处理观测数据集,我们采用了来自表面磁通量传输(SFT)模型的经向环流和湍流扩散参数。我们发现,观测到的轴对称矢量势的演变包含了时间-纬度模式,这可能是大尺度极性磁场在径向的湍流扩散效应造成的。我们认为 SFT 模型可以通过考虑径向湍流扩散和较低的扩散系数值来协调观测到的半球磁通生成率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Solar Poloidal Magnetic Field Generation Rate from Observations and Mean-Field Dynamos

Solar Poloidal Magnetic Field Generation Rate from Observations and Mean-Field Dynamos

To estimate the hemispheric flux generation rate of the large-scale radial magnetic field in Solar Cycles 23 and 24, we use the photospheric observations of the solar magnetic fields and results of the mean-field dynamo models. Results of the dynamo model show the strong impact of the radial turbulent diffusion on the surface evolution of the large-scale poloidal magnetic field and on the hemispheric magnetic flux generation rate. To process the observational data set, we employ the parameters of the meridional circulation and turbulent diffusion from the Surface Flux-Transport (SFT) models. We find that the observed evolution of the axisymmetric vector potential contains the time–latitude patterns which can result from the effect of turbulent diffusion of the large-scale poloidal magnetic field in the radial direction. We think that the SFT models can reconcile the observed rate of hemispheric magnetic flux generation by considering radial turbulent diffusion and lower values of the diffusion coefficient.

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来源期刊
Solar Physics
Solar Physics 地学天文-天文与天体物理
CiteScore
5.10
自引率
17.90%
发文量
146
审稿时长
1 months
期刊介绍: Solar Physics was founded in 1967 and is the principal journal for the publication of the results of fundamental research on the Sun. The journal treats all aspects of solar physics, ranging from the internal structure of the Sun and its evolution to the outer corona and solar wind in interplanetary space. Papers on solar-terrestrial physics and on stellar research are also published when their results have a direct bearing on our understanding of the Sun.
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