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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Selective Attenuation of Lightning-GeneratedWhistlers at Extralow Frequencies: DEMETER Spacecraft Observations
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Selective Attenuation of Lightning-GeneratedWhistlers at Extralow Frequencies: DEMETER Spacecraft Observations

机译:的选择性衰减频率:得墨忒耳飞船观测

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Frequency-time spectrograms measured by the Detection of Electro-Magnetic Emissions Transmitted from Earthquake Regions (DEMETER) spacecraft (2004–2010, altitude about 700 km) at frequencies below 20 kHz sometimes contain lightning-generated whistlers whose intensity is significantly reduced at specific frequencies. The frequencies of the reduced intensity vary smoothly over the event duration, forming apparent curves in frequency-time spectrograms. Events at frequencies higher than the Earth-ionosphere waveguide cutoff frequency were explained by the interference of the first few waveguide modes of lightning-generated spherics propagating therein (Záhlava et al., 2015, https://doi.org/10.1002/2015JA021607. Here we present an analysis of events observed at frequencies lower than about 1 kHz. Altogether, we analyze 263 events identified at the times when DEMETER operated in the burst mode. The vast majority of the events (95%) took place during the nighttime, and they occurred more frequently during spring/autumn than during winter/summer. We present an overview of event properties. Moreover, measurements of all six electromagnetic field components performed by DEMETER allow us to perform a detailed wave analysis. It is shown that the emissions propagate with high wave normal angles inclined toward the Earth. We suggest that the events might be due to the wave propagation in the ionospheric waveguide formed around the refractive index maximum at the altitude of about 105 km.
机译:频率时间谱图测量的检测电磁排放来自地震地区的传播(得墨忒耳)航天器(2004 - 2010年,高度约700公里)频率低于20 kHz有时包含lightning-generated强度的啸叫声在特定的频率显著降低。减少的频率强度有所不同在事件持续时间,顺利形成明显的曲线频率时间谱图。在频率高于事件Earth-ionosphere波导截止频率解释为前几的干扰波导模式lightning-generated球面三角学在其中传播(Zahlava et al ., 2015,https://doi.org/10.1002/2015JA021607。目前的分析观察到的事件频率低于1 kHz。我们分析263个事件在次确认得墨忒耳操作时破裂模式。大多数(95%)期间发生的事件夜间,他们更频繁地发生在春季比在冬季/夏季/秋季。我们报告的概述事件属性。此外,所有六个电磁测量得墨忒耳允许我们执行的字段组件波进行详细分析。排放高的波传播正常角度倾向于地球。认为,事件可能是由于波电离层波导中传播形成的在折射率最大的高度约为105公里。

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