English

Deciphering Solar Magnetic Activity I: On The Relationship Between The Sunspot Cycle And The Evolution Of Small Magnetic Features

Solar and Stellar Astrophysics 2015-06-19 v3

Abstract

Sunspots are a canonical marker of the Sun's internal magnetic field which flips polarity every ~22-years. The principal variation of sunspots, an ~11-year variation in number, modulates the amount of 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-year sunspot variation is intrinsically tied it to the spatio-temporal overlap of the activity bands belonging to the 22-year 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.

Keywords

Cite

@article{arxiv.1403.3071,
  title  = {Deciphering Solar Magnetic Activity I: On The Relationship Between The Sunspot Cycle And The Evolution Of Small Magnetic Features},
  author = {Scott W. McIntosh and Xin Wang and Robert J. Leamon and Rachel Howe and Larisza D. Krista and Anna V. Malanushenko and Jonathan W. Cirtain and Joseph B. Gurman and Michael J. Thompson},
  journal= {arXiv preprint arXiv:1403.3071},
  year   = {2015}
}

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26 pages