首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Height Variation of Gaps in 150-km Echoes andWhole Atmosphere Community ClimateModel Electron Densities Suggest Link to Upper Hybrid Resonance
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Height Variation of Gaps in 150-km Echoes andWhole Atmosphere Community ClimateModel Electron Densities Suggest Link to Upper Hybrid Resonance

机译:150公里的回波中间隙的高度变化和opole大气社区ClimateModel电子密封表明链接到上混合共振

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Radar echoes from the daytime lower F region near the magnetic equator, so-called 150-km echoes, have been puzzling researchers for decades. Neither the mechanisms that generate the enhanced backscatter at very high frequencies (typically 30-50 MHz), the sharp lower cutoff height, the intricate layering with multiple echo layers separated by narrow gaps, nor the modulation of the echoes by short-period gravity waves is well understood. Here we focus on the diurnal variation of the echo layers-specifically, certain wide gaps in the vertical structure-which apparently descend in the morning, reach their lowest altitude near local noon, and ascend in the afternoon, sometimes described as necklace structure based on the appearance of the layers in range-time-intensity diagrams. Analyzing high-resolution data obtained with the Jicamarca radar between 2005 and 2017, spanning more than one solar cycle, we find that (a) wide gaps and narrow lines occur in vertically stacked, systematically repeating pattern; (b) the gap heights vary with season and solar cycle; and (c) the gap heights can be associated with specific contours of plasma frequencies or electron densities. The last two findings are supported by simultaneous observations of VIPIR ionosonde reflection heights and by comparison of gap heights with electron density contours obtained with theWACCM-X 2.0 global model. Finally, the wide gaps appear to coincide with the double resonance condition, where the upper hybrid frequency equals integer multiples of the electron gyrofrequency. This may explain why field-aligned plasma irregularities are suppressed and enhanced radar backscatter is not observed inside the gaps.
机译:雷达从磁赤道附近的白天下F区域回声,所谓的150公里的回声,几十年来一直令人困惑的研究人员。在非常高的频率(通常为30-50MHz),急剧下截止高度的机制既不是在非常高的频率下(通常为30-50MHz),则具有通过窄间隙分离的多个回波层的复杂分层,也不通过短周期重力波调制回波很了解。在这里,我们专注于回声层的日元变化 - 具体而言,垂直结构中的某些宽间隙 - 这在早上显然下降,达到当地中午附近的最低海拔高度,并在下午提升,有时被描述为基于项链结构范围在范围 - 时间强度图中的外观。分析2005年至2017年之间的Jicamarca雷达获得的高分辨率数据,跨越多个太阳循环,我们发现(a)宽隙和窄线在垂直堆叠,系统地重复模式; (b)间隙高度随季节和太阳循环而变化; (c)间隙高度可以与等离子体频率或电子密度的特定轮廓相关联。通过同时观察Vipir Ionosonde反射高度,并通过用Hycaccm-x 2.0全局模型获得的电子密度轮廓的间隙高度进行支持,支持最后两个发现。最后,宽间隙似乎与双共振条件一​​致,其中上部混合频率等于电子转发的整数倍数。这可以解释为什么在间隙内未观察到抑制现场对准的等离子体不规则性并且在间隙内未观察到增强的雷达反向散射。

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