利用太阳辐照度和射电通量对过渡区和日冕的太阳旋转进行比较研究

IF 2.7 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Solar Physics Pub Date : 2024-09-20 DOI:10.1007/s11207-024-02375-y
Avneesh Kumar, Nagendra Kumar, Hari Om Vats
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引用次数: 0

摘要

我们根据分别来自过渡区和日冕下部的 93.5 纳米太阳辐照度和 10.7 厘米太阳射电通量,研究了太阳自转剖面的时间变化。自相关技术用于计算周期性时间序列数据中的周期。研究了 2011-2021 年归一化和去趋势数据的恒星旋转周期。2011-2021 年太阳辐照度和射电通量的恒星旋转周期分别为 22.75 天至 26.17 天和 19.42 天至 28.14 天。太阳辐照度和射电通量的恒星旋转周期平均值分别为 24.76 天和 23.76 天。太阳辐照度的平均恒星旋转周期高于太阳射电通量的平均恒星旋转周期。在 2011 至 2021 年期间的几乎所有年份,太阳辐照度的恒星旋转周期都大于或等于太阳射电通量的恒星旋转周期。我们发现,在 2011-2021 年期间,下日冕的旋转速度快于过渡区,即在 2011-2021 年期间,下日冕的移动速度比过渡区快 4%。我们发现归一化日辐照度与射电通量之间存在线性关系,相关系数为 0.986。通过交叉相关分析,我们研究了太阳辐照度和射电通量之间的相位关系,发现太阳辐照度和射电通量之间没有时滞。
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Comparative Study of Solar Rotation of Transition Region and Corona using Solar Irradiance and Radio Flux

We study the temporal variation of solar rotation profiles based on solar irradiance at 93.5 nm and solar radio flux at 10.7 cm originating from the transition region and lower corona, respectively. The autocorrelation technique is used to calculate the period in periodic time series data. The sidereal rotation periods for normalized and detrended data are studied for 2011 – 2021. The sidereal rotation periods for solar irradiance and radio flux for 2011 – 2021 vary from 22.75 to 26.17 days and 19.42 to 28.14 days, respectively. The mean of the sidereal rotation periods for solar irradiance and radio flux are 24.76 and 23.76 days, respectively. The mean sidereal rotation period for solar irradiance is higher than the mean sidereal rotation period for solar radio flux. The sidereal rotation period for solar irradiance is greater than or equal to the sidereal rotation period for solar radio flux for almost all the years between 2011 and 2021. It is found that the lower corona rotates faster than the transition region during 2011 – 2021, i.e., the lower corona is found to be moving 4% faster than the transition region during 2011 – 2021. We found a linear relationship between the normalized daily irradiance and radio flux with a correlation coefficient of 0.986. Using cross-correlation analysis, we investigated a phase relationship between solar irradiance and radio flux and found no time lag between solar irradiance and radio flux.

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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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