论文标题

日药数量和基团黑子面积数据中存在的时间变化和准周期变化,在Kodaikanal天文台测得的太阳能周期14至24

Temporal evolutions and quasi-periodic variations present in the sunspot number and group sunspot area data measured at Kodaikanal Observatory for solar cycles 14 to 24

论文作者

Ravindra, Belur, Chowdhury, Partha, Ray, Pratap Chandra, Pichamani, Kumaravel

论文摘要

自1904年以来,Kodaikanal天文台已经在白光下对太阳进行了天气观测,这些图像是在称为太阳图表的stonyhurst网格上勾勒出来的。这些连续的手绘数据集用于对太阳的长期研究。本文调查了1905---2016每月半球的黑子数和黑子组面积的时间和周期性变化,涵盖了太阳能循环14至24。我们发现,黑子数量和组面积的时间变化在每个半球和相对半球的太阳周期的不同时间的峰值。对于两个数据集,自行车19均显示最大幅度。对于黑子数时间序列,周期24是最弱的,而小组面积的周期为15。在两个数据集中都发现了双峰的存在和违反``奇数规则''的行为。我们研究了小波技术的两个时间序列中的周期性和准周期变化。我们注意到,随着$ \ sim $ 11〜年周期的基本模式和22岁的极性逆转期,黑子活动数据还显示了相对半球的中期周期性,特别是里格集团和准双年生周期性。这些检测到的准周期性的时间演变在北半球和南半球也有所不同。我们从统计学上分析了数据集,以了解相反半球之间的批量特性和耦合。研究表明,两个半球数据集不同,但可能存在一些依赖性。

The Kodaikanal Observatory has made synoptic observations of the Sun in white light since 1904, and these images are sketched on the Stonyhurst grids called sun charts. These continuous hand-drawn data sets are used for long-term studies of the Sun. This article investigates temporal and periodic variations of the monthly hemispheric sunspot number and sunspot group area for 1905--2016, covering solar cycles 14 to 24. We find that the temporal variations of the sunspot number and group area are different in each hemisphere and peak at different times of the solar cycle in the opposite hemisphere. For both the data sets, Cycle 19 shows maximum amplitude. For the sunspot number time series, Cycle 24 was the weakest, and Cycle 15 for the group area. The existence of double peaks and violation of the ``odd-even rule'' was found in both data sets. We have studied the periodic and quasi-periodic variations in both the time series by wavelet technique. We noticed that along with the fundamental mode of the $\sim$ 11~year cycle and polarity reversal period of 22~years, the sunspot activity data also exhibited several mid-term periodicities in the opposite hemispheres, specifically the Riger group and quasi-biennial periodicities. The temporal evolution of these detected quasi-periodicities also differs in the northern and southern hemispheres. We analyzed the data set statistically to understand the bulk properties and coupling between the opposite hemispheres. The study indicates that the two hemispheric data sets differ, but some dependency could be present.

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