论文标题

重叠的磁性活动循环和黑子数:预测黑子周期25振幅

Overlapping Magnetic Activity Cycles and the Sunspot Number: Forecasting Sunspot Cycle 25 Amplitude

论文作者

McIntosh, Scott W., Chapman, Sandra C., Leamon, Robert J., Egeland, Ricky, Watkins, Nicholas W.

论文摘要

太阳在大约11年的时间内表现出了磁盘上的斑点数量的良好调制。从现代观察天文学的曙光开始,黑子就对理解提出了一个挑战 - 他们的准周期性变化数量是175年前,刺激了至今的社区范围的兴趣。许多技术能够解释日子“循环”的时间标志,(几何)形状和振幅,但是预先准确预测这些特征仍然难以捉摸。最近有观察动机的研究表明,太阳的22年(Hale)磁性周期与黑子周期标志和模式的产生之间的关系,而不是黑子周期的幅度。使用(离散的)希尔伯特(Hilbert)在270年以上的(每月)黑子数量上转换,我们坚强地识别出所谓的“终止”事件,标志着前11年的黑子周期结束,当前周期的增强/加速度以及22-元素磁性活性周期的结束。使用这些,我们提取终端的时间间距与黑子周期的大小之间的关系。鉴于这种关系以及我们在2020年对终结者事件的预测,我们推断出Sunspot Cycle 25的规模可能是自记录开始以来的前几个。这种结果与Sunspot周期25幅度的社区共识估计与社区共识估计形成鲜明对比。

The Sun exhibits a well-observed modulation in the number of spots on its disk over a period of about 11 years. From the dawn of modern observational astronomy sunspots have presented a challenge to understanding -- their quasi-periodic variation in number, first noted 175 years ago, stimulates community-wide interest to this day. A large number of techniques are able to explain the temporal landmarks, (geometric) shape, and amplitude of sunspot "cycles," however forecasting these features accurately in advance remains elusive. Recent observationally-motivated studies have illustrated a relationship between the Sun's 22-year (Hale) magnetic cycle and the production of the sunspot cycle landmarks and patterns, but not the amplitude of the sunspot cycle. Using (discrete) Hilbert transforms on more than 270 years of (monthly) sunspot numbers we robustly identify the so-called "termination" events that mark the end of the previous 11-yr sunspot cycle, the enhancement/acceleration of the present cycle, and the end of 22-yr magnetic activity cycles. Using these we extract a relationship between the temporal spacing of terminators and the magnitude of sunspot cycles. Given this relationship and our prediction of a terminator event in 2020, we deduce that Sunspot Cycle 25 could have a magnitude that rivals the top few since records began. This outcome would be in stark contrast to the community consensus estimate of sunspot cycle 25 magnitude.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源