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利用傅里叶-勒让德分解探测太阳子午环流

Probing the Solar Meridional Circulation Using Fourier Legendre Decomposition.

作者信息

Braun D C, Birch A C, Fan Y

机构信息

NorthWest Research Associates, 3380 Mitchell Lane, Boulder, CO 80301, USA.

Max-Planck-Institut für Sonnensystemforschung, Justus-von-Liebig-Weg 3, D-37077 Göttingen, Germany.

出版信息

Astrophys J. 2021 Apr 16;911(1). doi: 10.3847/1538-4357/abe7e4. Epub 2021 Apr 15.

DOI:10.3847/1538-4357/abe7e4
PMID:33958810
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8097699/
Abstract

We apply the helioseismic methodology of Fourier Legendre decomposition to 88 months of Dopplergrams obtained by the Helioseismic and Magnetic Imager (HMI) as the basis of inferring the depth variation of the mean meridional flow, as averaged between 20° and 60° latitude and in time, in both the northern and southern hemispheres. We develop and apply control procedures designed to assess and remove center-to-limb artifacts using measurements obtained by performing the analysis with respect to artificial poles at the east and west limbs. Forward modeling is carried out using sensitivity functions proportional to the mode kinetic energy density to evaluate the consistency of the corrected frequency shifts with models of the depth variation of the meridional circulation in the top half of the convection zone. The results, taken at face value, imply substantial differences between the meridional circulation in the northern and southern hemispheres. The inferred presence of a return (equatorward propagating) flow at a depth of approximately 40 Mm below the photosphere in the northern hemisphere is surprising and appears to be inconsistent with many other helioseismic analyses. This discrepancy may be the result of the inadequacy of our methodology to remove systematic errors in HMI data. Our results appear to be at least qualitatively similar to those by Gizon et al., which point to an anomaly in HMI data that is not present in MDI or GONG data.

摘要

我们将傅里叶勒让德分解的日震学方法应用于日震和磁成像仪(HMI)获取的88个月的多普勒图,以此为基础推断平均子午流在南北半球20°至60°纬度之间以及时间上的深度变化。我们开发并应用了控制程序,旨在利用针对东西边缘处人工极点进行分析所获得的测量结果来评估和消除中心到边缘的伪影。使用与模式动能密度成比例的灵敏度函数进行正向建模,以评估校正后的频移与对流层上半部分子午环流深度变化模型的一致性。表面上看,结果暗示了南北半球子午环流之间存在显著差异。在北半球,推断在光球层以下约40Mm深度处存在回流(向赤道传播的流),这令人惊讶,并且似乎与许多其他日震学分析不一致。这种差异可能是由于我们的方法不足以消除HMI数据中的系统误差所致。我们的结果似乎至少在定性上与吉宗等人的结果相似,他们指出HMI数据中存在MDI或GONG数据中不存在的异常。

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引用本文的文献

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Dynamics of Large-Scale Solar Flows.大规模太阳气流的动力学
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本文引用的文献

1
Meridional flow in the Sun's convection zone is a single cell in each hemisphere.太阳对流区的经向流动是每个半球的单个单元。
Science. 2020 Jun 26;368(6498):1469-1472. doi: 10.1126/science.aaz7119.
2
Variations in the Sun's meridional flow over a solar cycle.太阳经向流动在太阳活动周中的变化。
Science. 2010 Mar 12;327(5971):1350-2. doi: 10.1126/science.1181990.
3
GONG Observations of Solar Surface Flows.太阳表面流动的龚氏观测
Science. 1996 May 31;272(5266):1306-9. doi: 10.1126/science.272.5266.1306.
4
The Global Oscillation Network Group (GONG) Project.全球振荡网络小组(GONG)项目
Science. 1996 May 31;272(5266):1284-6. doi: 10.1126/science.272.5266.1284.