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Special Issue: The physics of solar and solar-like oscillations; guest editors T. Bedding and J. Leibacher

机译:特刊:太阳和类太阳振荡的物理学;客座编辑T. Bedding和J. Leibacher

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摘要

Local helioseismic techniques, such as ring analysis and time-distance helioseismology, have already shown that large-scale flows near the surface converge towards major active regions. Ring analysis has further demonstrated that at greater depths some active regions exhibit strong outflows. A critique leveled at the ring-analysis results is that the Regularized Least Squares (RLS) inversion kernels on which they are based have negative sidelobes near the surface. Such sidelobes could result in a surface inflow being misidentified as a diverging outflow at depth. In this paper we show that the Optimally Located Averages (OLA) inversion technique, which produces kernels without significant sidelobes, generates flows markedly similar to the RLS results. Active regions are universally zones of convergence near the surface, while large complexes evince strong outflows deeper down.
机译:局部环流地震技术,例如环分析和时距环流地震学,已经表明,地表附近的大规模流向主要活动区域汇聚。环分析进一步表明,在更大的深度处,一些活动区域表现出强烈的流出。对环分析结果的批评是,它们所基于的正则最小二乘(RLS)反演内核在表面附近具有负旁瓣。这样的旁瓣可能导致表面流入被误认为是深度发散的流出。在本文中,我们证明了最佳定位平均值(OLA)反演技术产生的内核没有明显的旁瓣,产生的流量与RLS结果非常相似。活跃区域通常是地表附近的会聚区域,而大型综合体则表明在深处有大量流出。

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