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The north and south symmetry of the ionospheric storms at magnetic conjugate points for low latitudes during the March 1976 severe geomagnetic storms and the relation between daily changes of the storms with geomagnetic activity indices

机译:1976年3月,磁性共轭磁性共轭点的北方和南方对称性在1976年3月的严重地磁风暴和地磁活动指数风暴日常变化的关系

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In this study, the behavior of the ionospheric storms at magnetic conjugate points for two low-latitude observatories during March 1976 severe geomagnetic storms and the relationship between the ionospheric storms and different geomagnetic indices was investigated. For this purpose, hourly ionospheric critical frequency (foF2) data measured from March 19 to April 17, 1976 at Akita and Brisbane stations were used. These stations are magnetic conjugate pairs. The K-p, D-st, a(p), and a(p), (tau) values are geomagnetic activity indicators for this research. The a(p), (tau) reflects an integration of the geomagnetic activity over a number of 3-h intervals, giving more weight to the recent past. The a(p) (tau) values could be better described the magnitude of main phase foF2 deviations using an integration of a(p) that takes into account the recent history of geomagnetic activity. To investigate the response of ionospheric storms at magnetic conjugate points to the geomagnetic activity changes during the severe geomagnetic storms, the foF2 values in the geomagnetic quiet days were subtracted from all the foF2 values and thus the delta foF2 values were obtained. The cross-correlation coefficient (R) between delta foF2 values of these stations was calculated and it was obtained as 0,93. Besides, the cross-correlation coefficients (R) between delta foF2 values at Brisbane and Akita stations with K-p, D-st, a(p), and a(p) (tau) values were calculated. The best the cross-correlation coefficient between the geomagnetic indices and the delta foF2 values at the Brisbane was obtained as 0,89 for a(p) (tau = 0,5) values. However the best cross-correlation coefficient between the geomagnetic indices and delta foF2 values at the Akita was obtained as 0,87 for a(p) (tau = 0,7) values. Next, the variations depending on local time of delta foF2 values at Brisbane and Akita were investigated for both the main phases and the recovery phases of two severe geomagnetic storms. During the main phases of the geomagnetic storms, the delta foF2 values at both Brisbane)and Akita gradually increase with decreasing D-st values. However during the recovery phases of the geomagnetic storms, the mean delta foF2 values ((delta foF2))over bar at both Brisbane and Akita have positive values during the local nighttime whereas they have negative values during the local daytime. It is presumed that prompt penetrating electric fields (PPEFs) that penetrate into the magnetosphere and the Earth's ionosphere during the geomagnetic storms are responsible for these results. (C) 2019 COSPAR. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了1976年3月在1976年3月的严重地磁风暴期间为两个低纬度观测区的磁性共轭点的电离层风暴的行为及电离层风暴与不同地磁指数之间的关系。为此目的,使用了从3月19日至1976年4月17日在秋田和布里斯班站测量的每小时电离层临界频率(FOF2)数据。这些车站是磁性共轭对。 K-P,D-ST,A(P)和A(P),(TAU)值是该研究的地质磁性活动指标。 a(p),(tau)反映了几种3小时间隔内的地磁活动的整合,给出了近期的重量。可以更好地描述a(p)(tau)值使用考虑到最近的地磁活动历史的一体化的主要相FOF2偏差的大小。为了研究磁性缀合物的电离层风暴的响应,在严重的地磁风暴期间对地磁活动的变化,从所有FOF2值中减去了地质静脉静脉间隔的FOF2值,从而获得了ΔFOF2值。计算这些站的Delta FOF2值之间的互相关系数(R),得到0.93。此外,计算了Brisbane和Akita站之间的ΔFOF2值之间的互相关系数(R),用K-P,D-ST,A(P)和(P)(P)(TAU)值。在Brisbane处的地磁指数和ΔFOF2值之间的最佳互相关系数被获得为0.89,用于(P)(Tau = 0.5)值。然而,对于(P)(Tau = 0,7)值,获得了秋叶阶段和δfof2值之间的最佳互相关系数。接下来,研究根据Brisbane和Akita的达到FOF2值的局部时间的变化,用于两个严重的地磁风暴的主要阶段和恢复阶段。在地磁风暴的主要阶段期间,Brisbane的Delta FOF2值和秋季逐渐随着D-ST值逐渐增加。然而,在地磁风暴的恢复阶段期间,Brisbane和Akita在局部夜间期间的杆>上的平均delta fof2值(<(delta fof2))在当地夜间时具有正值,而它们在当地日间期间具有负值。推测,在地磁风暴期间,提示穿透到磁层和地球电离层的电场(PPEF)对这些结果负责。 (c)2019 Cospar。 elsevier有限公司出版。保留所有权利。

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