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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ionospheric Response to 22-23 June 2015 Storm as Investigated Using Ground-Based Ionosondes and GPS Receivers Over India
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Ionospheric Response to 22-23 June 2015 Storm as Investigated Using Ground-Based Ionosondes and GPS Receivers Over India

机译:2015年6月22日22日22日的电离层反应,使用基于地面的IONOSONDES和GPS接收器进行调查

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In this paper, we present response of equatorial and low-latitude ionosphere to 22/23 June 2015 geomagnetic storm using a chain of ground-based ionosondes located at Tirunelveli (8.73°N,77.70°E; geomagnetic latitude: 0.32°N), Hyderabad (17.36°N, 78.47°E; geomagnetic latitude: 8.76°N), and Allahabad (25.45°N, 81.85°E; geomagnetic latitude: 16.5°N) along with a chain of GPS receivers. Uniqueness of this storm is that in contrast to the equatorial plasma bubbles that were detected in the European sector, we see suppression of plasma bubbles in the Indian sector. The observations suggest that westward penetration electric field during local midnight caused abrupt decrease of virtual height (h'F (km)) to ~200 km and suppressed plasma bubbles due to undershielding. Later, the layer increased to 500 km simultaneously due to overshielding effect. On 23 June, we observed negative storm in the Northern Hemisphere while positive storm in the Southern Hemisphere. In addition, absence of equatorial E_s layers at Tirunelveli and presence of F_3 layer at Tirunelveli/Hyderabad seem to be associated with equatorial electrojet (EEJ)/counter electrojet (CEJ) variations. However, on 24 June, we observed strong negative storm effects at Allahabad/Hyderabad, while positive storm effect at Tirunelveli. Simultaneous enhancement of h'F (km) at all three ionosonde stations at 20:30 UT on 23 June during recovery phase suggest eastward disturbance dynamo (DD) electric field that caused presunrise spread F at Hyderabad/Allahabad but void of spread F at Tirunelveli suggesting its midlatitude origin. Periodogram analysis of f_oF_2 and h'F (km) in the present analysis suggest the presence of shorter periods (~< 2 h) associated with prompt penetration (PP) electric fields while larger periods (>2 h) associated with DD electric field/winds.
机译:在本文中,我们使用位于Tirunelveli(8.73°N,77.70°E; Geomagnetic Latitude:0.32°N),海德拉巴(17.36°N,78.47°E;地磁泻水:8.76°N)和Allahabad(25.45°N,81.85°E; Geomagnetic Latitude:16.5°N)以及GPS接收器链。这场风暴的独特性是,与欧洲部门中检测到的赤道等离子气泡相反,我们看到印度部门的抑制了血浆泡沫。观察结果表明,局部午夜期间的西部渗透电场导致虚拟高度(H'f(km))突然降低至〜200km,抑制等离子气泡引起的。后来,由于过光影响,该层同时增加到500 km。 6月23日,我们观察了北半球北半球的负面风暴,而南半球的正面风暴。另外,Tirunelveli的赤道E_S层和Tirunelveli / Hyderabad的F_3层的存在似乎与赤道电气喷射(EEJ)/计数器电气喷射(CEJ)变化相关联。然而,在6月24日,我们观察到Allahabad / Hyderabad的强烈负面风暴效应,而Tirunelveli的正面风暴效应。在6月23日在恢复阶段的20:30 UT上同时增强了所有三个Ionosonde站的H'f(公里)建议向东障碍发电机(DD)电场,导致海德拉巴(Hyderabad / Allahabad)在Hyderabad / Allahabad的Pruundis Spread F展开,但在Tirunelveli的扩展F中失效建议其中间迹象。本分析中F_OF_2和H'F(KM)的周期图分析表明,与迅速穿透(PP)电场相关的较短时段(〜<2小时),而与DD电场相关的较大周期(> 2小时)/风。

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