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The Origin of Midlatitude Plasma Depletions Detected During the 12 February 2000 and 29 October 2003 Geomagnetic Storms

机译:中间纬度等离子消逝的起源发现在2000年2月12日和29日2003年10月地磁风暴

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Large amplitude plasma density irregularities have occasionally been detected at night in the midlatitude F region during geomagnetic storms. They are often interpreted in terms of equatorial plasma bubbles (EPBs) because midlatitude irregularities have the morphology of EPBs. This study assesses whether morphology can be a determining factor in ascribing the origin of such midlatitude ionospheric irregularities. We address this question by analyzing the observations of the First Republic of China satellite (ROCSAT-1) and Defense Meteorological Satellite Program (DMSP)-F14 and -F15 satellites during the geomagnetic storms on 12 February 2000 and 29 October 2003. On both days, ROCSAT-1 detects plasma depletions at midlatitudes in broad longitude regions and DMSP satellites detect isolated severe plasma depletions whose widths and depths are much wider and deeper than those of typical EPBs. The distinguishing characteristics during the storms are the detection of midlatitude depletions only in the Southern Hemisphere and the occurrence of some of these depletions before 19 hr local time and at the longitudes where EPBs are absent in the equatorial region. These characteristics are not explained satisfactorily by the characteristics of EPBs. Considering the detection of some of the midlatitude depletions at the equatorward edge of ionospheric perturbations in midlatitudes, midlatitude depletions are likely ionospheric perturbations that originated from higher latitudes. Because midlatitude depletions can originate from different sources, the morphology alone is not a determining factor of their origin.
机译:大的振幅等离子体密度违规行为晚上偶尔被发现中间纬度F地区地磁风暴。他们常常解释赤道等离子体泡沫(epb)因为中间纬度违规行为的形态环境保护局。研究评估形态是否可以在把起源的决定性因素这样中间纬度电离层不规则。通过分析解决这个问题观察第一共和国和国防气象卫星(ROCSAT-1)卫星计划(DMSP) -F14和f15卫星磁暴期间在 2月12日2000年和2003年10月29日。检测血浆消逝在情理之中广泛的经度地区和DMSP卫星检测孤立严重等离子消逝的宽度和深度要比更广泛和深入这些典型的组件。在风暴的特点只检测中间纬度消逝的南半球和发生的一些当地时间19日人力资源和之前这些消逝环境保护局的经度是缺席的赤道地区。令人满意的特征来解释环境保护局。中间纬度消逝朝赤道方向边缘电离层扰动在情理之中,中间纬度消逝可能电离层扰动,源于更高纬度。来自不同的来源,形态本身并不是他们的一个决定因素来源。

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