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Ionospheric effects of the solar eclipse of March 9, 1997, as deduced from GPS data

机译:GPS数据推导的1997年3月9日日食的电离层效应

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摘要

This paper presents data from first measurements of total electron content (TEC) and its gradient during the solar eclipse of March 9, 1997, obtained with the GPS-radio interferometer at Irkutsk The interferometer consists of three receivers (one Turbo-Rogue SNR-8000, and two Ashtech 2-12) located at the vertices of a triangle and spaced by about 3-5 km. The measured TEC variations are indicative of profound changes in the ion production process in the ionosphere attendant on the solar eclipse, simultaneously in a large volume of space with a radius of at height 300 km at 300 km altitude. The delay of a minimum value of TEC with respect to the maximum phase of eclipse at 300 km altitude was about 10 min, and the depression depth of TEC growth varies from 1 divided by 3x10(16)m(-2). By analyzing the data on TEC gradient variations, one is led to conclude that the depression of TEC growth during the eclipse is essentially independent of the longitude and of the latitude (within the observation ranges 52+/-6 degrees N and 104+/-11 degrees E). [References: 10]
机译:本文介绍了使用伊尔库茨克的GPS无线电干涉仪获得的1997年3月9日日食期间总电子含量(TEC)及其梯度的首次测量数据。干涉仪由三个接收机组成(一个Turbo-Rogue SNR-8000) ,和两个Ashtech 2-12)位于一个三角形的顶点上,相距约3-5公里。测得的TEC变化表明,伴随日食的电离层中的离子产生过程发生了深远的变化,同时在300 km高度的半径为300 km的大量空间中。在300 km高度,TEC最小值相对于月食最大相位的延迟约为10分钟,而TEC生长的凹陷深度从1除以3x10(16)m(-2)。通过分析有关TEC梯度变化的数据,可以得出结论,日食期间TEC增长的下降基本上与经度和纬度无关(在观测范围52 +/- 6 N和104 +/-内)。东经11度)。 [参考:10]

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