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Equatorial zonal electric fields inferred from a 3-D electrostatic potential model and ground-based magnetic field measurements

机译:从3-D静电势模型和地磁场测量得出的赤道纬向电场

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摘要

We present a new technique to infer quiet time zonal electric fields in the daytime equatorial ionosphere. The electric field inference technique utilizes a three-dimensional (3-D) electrostatic potential model of the low-latitude ionosphere constrained by ground-based magnetic field measurements. To test this technique, inferred zonal electric fields for the Peruvian sector in Jicamarca (11.95°S, 283.13°E, 0.6°N dip latitude) were compared with zonal electric field (vertical drift) measurements made by the Jicamarca Incoherent Scatter Radar. The comparison shows a good agreement between the inferred and measured electric fields. An example of electric field estimation for Davao (7.4°N, 125.4°E, 0.58°S dip latitude) in the Philippines sector is also presented in this report. Inferred electric fields for Davao are in good agreement with F region vertical plasma drifts measured by drift sensors onboard the AE-E and ROCSAT-1 satellites on that longitude sector. Our results suggest that realistic estimates of quiet time zonal electric fields for the equatorial ionosphere can be obtained from the 3-D potential model whenever observatory magnetic field measurements are available.
机译:我们提出了一种新技术来推断白天赤道电离层的静时带状电场。电场推断技术利用了基于地面磁场测量的低纬度电离层的三维(3-D)静电势模型。为了测试该技术,将推断的Jicamarca秘鲁扇区的区域电场(11.95°S,283.13°E,0.6°N倾角)与Jicamarca非相干散射雷达进行的区域电场(垂直漂移)测量进行了比较。比较表明,在推断的电场和测量的电场之间有很好的一致性。本报告中还提供了一个菲律宾地区达沃(7.4°N,125.4°E,0.58°S倾角)的电场估计示例。 Davao的推断电场与该经度扇区上AE-E和ROCSAT-1卫星上的漂移传感器测得的F区垂直等离子漂移高度吻合。我们的研究结果表明,只要观测天文台磁场测量可用,就可以从3-D势模型获得对赤道电离层静时纬向电场的真实估计。

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