N-S Asymmetry and Periodicity of Solar Activity from Solar Cycles 21 – 24

IF 2.7 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
S. F. Ibrahim, N. K. Hafez, M. A. El-Borie, A. A. Bishara, A. M. El-Taher
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Abstract

Continuous wavelet power spectrum approach has been utilized to examine the short- and long-term fluctuations of solar plage area (PA), solar flare index (SFI), and sunspot numbers (SSNs) from 1976 to 2022. Based on the distribution of monthly data from the hemisphere SSNs, the monthly average of the solar parameters under consideration has been divided into northern and southern groups. Besides, the N-S asymmetry, the periodicity, the interconnection, and phase synchronization between the northern and southern groups of the solar flare index and plage area have been presented using the wavelet technique. The findings show that the northern group of PAs has short and intermediate periods of 0.9, 1.5, 2.5, and 3.5 years, whereas the southern group shows the prevalence of periods of 0.7, 1.9, and 3.2 years. In contrast, the northern group of SFI displays periods of 0.6, 0.8, 1.5, and 3.5 years, whereas the southern group confirms the presence of discrete periods of 0.7 and 1.9 years. The PA and SFI data sets for the Solar Cycles (SCs) 21 – 24 show little correlation and fewer short periods in the cross-wavelet power spectra (XWT) and wavelet coherence (WTC) spectra between the northern and southern hemispheres.

第21 - 24太阳活动周期的N-S不对称性和太阳活动的周期性
利用连续小波功率谱方法研究了1976 - 2022年太阳斑面积(PA)、太阳耀斑指数(SFI)和太阳黑子数(ssn)的短期和长期波动。根据北半球ssn月资料的分布,将所考虑的太阳参数的月平均值分为南北两组。此外,利用小波变换分析了太阳耀斑指数和斑面积南北群的N-S不对称性、周期性、互联性和相位同步性。研究结果表明,北部群体的PAs有0.9、1.5、2.5和3.5年的短期和中期周期,而南部群体的PAs流行期为0.7、1.9和3.2年。相反,SFI的北部组显示周期为0.6、0.8、1.5和3.5年,而南部组证实存在0.7和1.9年的离散周期。PA和SFI的太阳周期(SCs) 21 ~ 24数据集在南北半球的交叉小波功率谱(XWT)和小波相干谱(WTC)上显示出较小的相关性和短周期。
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来源期刊
Solar Physics
Solar Physics 地学天文-天文与天体物理
CiteScore
5.10
自引率
17.90%
发文量
146
审稿时长
1 months
期刊介绍: Solar Physics was founded in 1967 and is the principal journal for the publication of the results of fundamental research on the Sun. The journal treats all aspects of solar physics, ranging from the internal structure of the Sun and its evolution to the outer corona and solar wind in interplanetary space. Papers on solar-terrestrial physics and on stellar research are also published when their results have a direct bearing on our understanding of the Sun.
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