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Are the equatorial electrojet and the Sq coupled systems? Transfer entropy approach

机译:赤道电喷和Sq耦合系统吗?传递熵法

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Whether equatorial electrojet (EEJ) and solar quiet (Sq) are independent systems or not is a long standing question. Techniques such as correlation analysis, interpretation of the westward currents observed between EEJ and Sq focus, along with the simulation studies have been used to address this question, hitherto. In this article, we revisit this problem using a method based on transfer entropy that examines the relationship between day-to-day variability in EEJ and Sq during low solar activity period (year 2007-08). Magnetic field variations in the horizontal component from the geomagnetic observatory, Tirunelveli (TIR) from the Indian region are used as a proxy for EEJ currents. To represent variations of Sq current system, two stations outside the EEJ belt, Nagpur (NGP) and Jaipur (JAI) are analyzed. Our analyses clearly demonstrate that significant information is exchanged between EEJ and Sq variations, and hence they are in a cross-talk with each other, indicating EEJ and Sq are coupled systems. Variations of time scales less than 2 h appear at the equatorial station before Sq stations. Similar analyses carried out for the African sector also validate the above results.
机译:赤道电喷(EEJ)和太阳安静(Sq)是否是独立系统是一个长期存在的问题。迄今为止,诸如相关分析,解释EEJ和Sq焦点之间观察到的西向流之类的技术以及模拟研究已被用于解决该问题。在本文中,我们使用基于转移熵的方法来重新研究该问题,该方法研究了低太阳活动期(2007-08年)中EEJ和Sq的日常变化之间的关系。来自印度地区地磁天文台Tirunelveli(TIR)的水平分量中的磁场变化被用作EEJ电流的代表。为了表示Sq当前系统的变化,分析了EEJ带之外的两个站Nagpur(NGP)和Jaipur(JAI)。我们的分析清楚地表明,在EEJ和Sq变体之间交换了大量信息,因此它们之间相互串扰,表明EEJ和Sq是耦合系统。小于2小时的时标变化出现在赤道站之前的Sq站。对非洲部门进行的类似分析也验证了上述结果。

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