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Occurrence climatology of equatorial plasma bubbles derived using FormoSat-3 ∕ COSMIC GPS radio occultation data

机译:使用Formosat-3 / COSMIC GPS无线电掩星衍生的赤道血浆泡沫的发生气候学

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The Global Positioning System – Radio Occultation (GPS-RO) observations from FormoSat-3 ∕ COSMIC are used to comprehend the global distribution of equatorial plasma bubbles which are characterized by depletion regions of plasma in the F region of the ionosphere. Plasma bubbles that cause intense scintillation of the radio signals are identified based on the S4?index derived from the 1 Hz raw signal-to-noise ratio measurements between 2007 and 2017. The analyses revealed that bubbles influenced by background plasma density occurred along the geomagnetic equator and had an occurrence peak around the dip equator during high solar activity. The peak shifted between the African and American sectors, depending on different solar conditions. Plasma bubbles usually developed around 19:00 local time (LT), with maximum occurrence around 21:00 LT during solar maximum and ~22:00 LT during solar minimum. The occurrence of bubbles showed a strong dependence on longitudes, seasons, and solar cycle with the peak occurrence rate in the African sector around the March equinox during high solar activity, which is consistent with previous studies. The GPS-RO technique allows an extended analysis of the altitudinal distribution of global equatorial plasma bubbles obtained from high vertical resolution profiles, thus making it a convenient tool which could be further used with other techniques to provide a comprehensive view of such ionospheric irregularities.
机译:来自Formosat-3 / COSMIC的全球定位系统 - 无线电掩星(GPS-RO)观察用于理解赤道血浆气泡的全球分布,其特征在于电离层F区域的血浆耗尽区域。基于S4的S4识别出引起无线电信号强烈闪烁的等离子体气泡。分析显示,分析显示,沿着地磁发生了背景等离子体密度的气泡在高太阳能活动期间,赤道在DIP赤道周围发生峰值。根据不同的太阳能条件,峰值在非洲和美国部门之间转移。等离子气泡通常在局部时间(LT)约为19:00左右,在太阳能最小值和太阳能最小值期间左右21:00 LT大约22:00。气泡的出现表现出对长期昼夜3月股份期间的非洲部门的高峰发生率的强烈依赖,在高太阳能活动期间,这与先前的研究一致。 GPS-RO技术允许扩展从高垂直分辨率型材获得的全局赤道等离子气泡的高度分布的延长分布,从而使其成为一种方便的工具,其可以进一步与其他技术一起使用,以提供这种电离层造成的综合图。

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