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Effects of prolonged southward interplanetary magnetic field on low-latitude ionospheric electron density

机译:延长的南向行星际磁场对低纬电离层电子密度的影响

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The present work describes the low-latitude ionospheric variability during an unusually prolonged (~33 h) geomagnetically disturbed condition that prevailed during 15–16 July 2012. The low-latitude electron density in summer hemisphere, investigated using ground- and satellite-based observations, responded to this by generating strong negative ionospheric storm on 16 July. The maximum electron density on 16 July over Indian low latitudes was reduced by more than 50% compared to that on a geomagnetically quiet day (14 July 2012). In contrast to the extreme reduction in total electron content (TEC) in the Northern Hemisphere, TEC from a winter hemispheric station revealed substantial (~23 total electron content unit, 1 TECU = 10~(16) elm~(-2)) enhancements on the same day. This contrasting hemispherical response in TEC is suggested to be due to the combined effects of strong interhemispheric and solar-driven day-night winds. Further, very weak equatorial electrojet (EEJ) strength on 16 July indicated that the westward electric field perturbations in the low-latitude ionosphere were possibly due to the disturbance dynamo effect associated with meridional circulation from polar to equatorial latitudes. Interestingly, despite reduction in the integrated EEJ strength on 15 July, the low-latitude electron density showed substantial enhancement, highlighting the significant effect of the positive ionospheric storm on the low-latitude ionosphere. The roles of electrodynamicaleutral-dynamical and compositional disturbances are discussed in view of these observations to understand low-latitude ionospheric response when geomagnetic disturbance persists for longer duration.
机译:本工作描述了在2012年7月15日至16日盛行的异常长时间(〜33 h)地磁扰动条件下的低纬度电离层变化。夏季半球的低纬度电子密度,是使用地面和卫星观测的结果进行了研究。对此做出了回应,在7月16日产生了强烈的电离层负风暴。与地磁平静的一天(2012年7月14日)相比,印度低纬度地区7月16日的最大电子密度降低了50%以上。与北半球的总电子含量(TEC)急剧下降相反,冬季半球站的TEC显示出显着的增强(〜23总电子含量单位,1 TECU = 10〜(16)elm〜(-2))。在同一天。 TEC中这种相反的半球响应被认为是由于强烈的半球间风和太阳驱动的昼夜风的综合作用所致。此外,7月16日赤道电喷(EEJ)的强度非常弱,表明低纬度电离层的西向电场扰动可能是由于与从极地到赤道纬线的子午环流有关的扰动发电机效应。有趣的是,尽管7月15日EEJ的综合强度降低了,但低纬度电子密度仍显着提高,突显了正电离层风暴对低纬度电离层的重大影响。鉴于这些观察结果,讨论了电动力/中性动力和成分扰动的作用,以了解当地磁扰动持续时间较长时的低纬度电离层响应。

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