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首页> 外文期刊>Geophysical Research Letters >Coherent and incoherent scatter radar observations during intense mid-latitude spread F
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Coherent and incoherent scatter radar observations during intense mid-latitude spread F

机译:在强中纬度展宽F期间的相干和非相干散射雷达观测

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摘要

An intense mid-latitude spread-F event occurred over Puerto Rico during the night of February 17, 1998. Simultaneous observations were made with the Cornell University Portable Radar Interferometer (CUPRI) located near Isabela, PR, the University of Illinois VHF radar located at Salinas, PR, GPS receivers at Isabela and St. Croix, measuring total electron content, the Arecibo incoherent scatter radar, and the Cornell All-Sky imager located at the Arecibo Observatory. This was the first time that such a broad range of complementary instrumentation captured a mid-latitude spread-F space weather event. It was the first (and still only) time that a spread-F event over the Caribbean exhibited large Doppler shifts in the VHF spectra. This event was characterized with multiple filaments that initially produced receding Doppler velocities exceeding 300 m/s as seen by CUPRI and the Illinois radar. The Arecibo incoherent scatter radar recorded line-of-sight velocities exceeding 100 m/s that moved the F-layer peak to over 400-km altitude. Airglow images of 630.0 nm emissions from F-region heights showed depleted structures oriented southeast to northwest. The large velocities observed with the radars suggest that we caught this event in a stage of explosive development. It is interesting that the first fully documented Caribbean event occurred during a magnetically active period. [References: 9]
机译:1998年2月17日晚上,在波多黎各发生了一次激烈的中纬度F扩散事件。使用位于美国伊利诺伊大学VHF雷达附近的康奈尔大学便携式雷达干涉仪(CUPRI)进行了同时观测。 Salinas,PR,Isabela和St. Croix的GPS接收器测量总电子含量,Arecibo非相干散射雷达和位于Arecibo天文台的康奈尔全天空成像仪。如此广泛的互补仪器首次捕获了中纬度F扩散空间天气事件。这是第一次(也是唯一一次)在加勒比海地区发生的扩展F事件在VHF频谱中出现了大的多普勒频移。该事件的特征是多根细丝,最初产生的后退多普勒速度超过300 m / s,如CUPRI和伊利诺伊州雷达所见。 Arecibo非相干散射雷达记录的视线速度超过100 m / s,将F层峰移动到了400多公里的高度。 F区域高度发出的630.0 nm发射的气辉图像显示出从东南到西北方向的枯竭结构。用雷达观测到的大速度表明我们在爆炸发展阶段抓住了这一事件。有趣的是,第一个充分记录的加勒比海事件发生在磁性活跃时期。 [参考:9]

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