首页> 外文期刊>The Astrophysical journal >DECIPHERING SOLAR MAGNETIC ACTIVITY. I. ON THE RELATIONSHIP BETWEEN THE SUNSPOT CYCLE AND THE EVOLUTION OF SMALL MAGNETIC FEATURES
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DECIPHERING SOLAR MAGNETIC ACTIVITY. I. ON THE RELATIONSHIP BETWEEN THE SUNSPOT CYCLE AND THE EVOLUTION OF SMALL MAGNETIC FEATURES

机译:解析太阳能活动。一,关于太阳黑子周期与小磁特征演化之间的关系

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摘要

Sunspots are a canonical marker of the Sun's internal magnetic field which flips polarity every ~22?yr. The principal variation of sunspots, an ~11?yr variation, modulates the amount of the magnetic field that pierces the solar surface and drives significant variations in our star's radiative, particulate, and eruptive output over that period. This paper presents observations from the Solar and Heliospheric Observatory and Solar Dynamics Observatory indicating that the 11?yr sunspot variation is intrinsically tied to the spatio-temporal overlap of the activity bands belonging to the 22?yr magnetic activity cycle. Using a systematic analysis of ubiquitous coronal brightpoints and the magnetic scale on which they appear to form, we show that the landmarks of sunspot cycle 23 can be explained by considering the evolution and interaction of the overlapping activity bands of the longer-scale variability.
机译:太阳黑子是太阳内部磁场的典范标记,它每22年旋转一次极性。太阳黑子的主要变化(约11年),可调节刺穿太阳表面的磁场量,并在此期间驱动我们恒星的辐射,颗粒和爆发输出的显着变化。本文介绍了来自太阳和太阳大气天文台以及太阳动力学天文台的观测结果,表明11 yr太阳黑子的变化本质上与属于22 yr磁性活动周期的活动带的时空重叠密切相关。通过对普遍存在的日冕亮点及其形成的磁尺度的系统分析,我们表明,太阳黑子周期23的界标可以通过考虑较长尺度变异性的重叠活动带的演化和相互作用来解释。
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