分析导致活动区 13664 形成的阶段序列,以及潜在的卡林顿式特征

Paolo Romano, Abouazza Elmhamdi, Alessandro Marassi, Lidia Contarino
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摘要

在2024年5月10日和11日之间,来自活动区(AR)13664的几个周期性X级耀斑引发了一场严重的G5级地磁暴。这个活动区的形态和紧凑程度与 1859 年著名的卡灵顿事件的活动区非常相似。虽然诱导地磁流产生的 Dst 指数值可能比卡林顿事件的指数值弱一个数量级,但 AR 13664 的特征值得特别关注。了解太阳大气中磁场出现和转变的机制,从而形成如此广泛、紧凑和复杂的AR,是至关重要的。我们对光层中观测到的新出现的磁通量和磁结构的水平运动的分析表明,在同一纬度和经度出现的一连串双极子,以及随后的会聚和剪切运动起着根本性的作用。磁流体力学模型中经常引用的这一时间顺序过程--出现、会聚运动和剪切运动--对于强太阳爆发前的磁能储存至关重要。
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Analyzing the Sequence of Phases Leading to the Formation of the Active Region 13664, with Potential Carrington-like Characteristics
Several recurrent X-class flares from Active Region (AR) 13664 have triggered a severe G5-class geomagnetic storm between May 10 and 11, 2024. The morphology and compactness of this AR closely resemble the active region responsible for the famous Carrington Event of 1859. Although the induced geomagnetic currents produced a value of the Dst index, probably, an order of magnitude weaker than that of the Carrington Event, the characteristics of AR 13664 warrant special attention. Understanding the mechanisms of magnetic field emergence and transformation in the solar atmosphere that lead to the formation of such an extensive, compact and complex AR is crucial. Our analysis of the emerging flux and horizontal motions of the magnetic structures observed in the photosphere reveals the fundamental role of a sequence of emerging bipoles at the same latitude and longitude, followed by converging and shear motions. This temporal order of processes frequently invoked in magnetohydrodynamic models - emergence, converging motions, and shear motions - is critical for the storage of magnetic energy preceding strong solar eruptions that, under the right timing, location and direction conditions, can trigger severe space weather events at Earth.
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