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Modeling the Subsurface Structure of Sunspots

机译:模拟黑子的地下结构

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While sunspots are easily observed at the solar surface, determining their subsurface structure is not trivial. There are two main hypotheses for the subsurface structure of sunspots: the monolithic model and the cluster model. Local helioseismology is the only means by which we can investigate subphotospheric structure. However, as current linear inversion techniques do not yet allow helioseismology to probe the internal structure with sufficient confidence to distinguish between the monolith and cluster models, the development of physically realistic sunspot models are a priority for helioseismologists. This is because they are not only important indicators of the variety of physical effects that may influence helioseismic inferences in active regions, but they also enable detailed assessments of the validity of helioseismic interpretations through numerical forward modeling. In this article, we provide a critical review of the existing sunspot models and an overview of numerical methods employed to model wave propagation through model sunspots. We then carry out a helioseismic analysis of the sunspot in Active Region 9787 and address the serious inconsistencies uncovered by Gizon et al. (2009a, 2009b). We find that this sunspot is most probably associated with a shallow, positive wave-speed perturbation (unlike the traditional two-layer model) and that travel-time measurements are consistent with a horizontal outflow in the surrounding moat.
机译:尽管在太阳表面很容易观察到黑子,但确定其地下结构并非易事。关于黑子的地下结构有两个主要假设:整体模型和聚类模型。局部日震学是研究光圈以下结构的唯一手段。然而,由于当前的线性反演技术尚不能使地震学以足够的信心来探测整体结构和团簇模型,因此开发物理上实际的黑子模型是太阳震学家的首要任务。这是因为它们不仅是可能影响活动区螺旋地震推论的各种物理效应的重要指标,而且还可以通过数值正演模型对螺旋地震解释的有效性进行详细评估。在本文中,我们对现有的黑子模型进行了重要的回顾,并概述了用于模拟通过黑子传播的波的数值方法。然后,我们对活动区9787中的黑子进行了流变分析,并解决了Gizon等人发现的严重矛盾之处。 (2009a,2009b)。我们发现该黑子很可能与浅的正波速摄动有关(不同于传统的两层模型),并且行进时间的测量值与周围护城河的水平流出量一致。

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