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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Chorus and chorus-like emissions seen by the ionospheric satellite DEMETER
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Chorus and chorus-like emissions seen by the ionospheric satellite DEMETER

机译:电离层卫星DEMETER观测到的合唱和类合唱发射

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A lot of different emissions have been detected by the low-altitude satellite DEMETER (Detection of Electro-Magnetic Emissions Transmitted from Earthquake Regions), and the aim of this paper is to study extremely low frequency (ELF) electromagnetic waves with elements drifting in frequency. It is shown that only some of them can be considered as usual chorus. These chorus elements are emitted in the equatorial plane, and their propagation analysis indicates that they are going downward at low altitudes in the ionosphere to be detected by the satellite. The study of one remarkable event recorded along the same orbit in both the Northern and the Southern Hemispheres on 8 May 2008 indicates that this propagation mechanism is reinforced at the location of the ionospheric trough, which corresponds to the plasmapause at higher altitudes. It has been observed that usual chorus elements at low frequencies are always in a frequency band which overlaps with a hiss band limited by a frequency cutoff close to the proton gyrofrequency. Other drifting elements can be attributed to emissions triggered by PLHR (power line harmonic radiation). It means that without a high-resolution spectral analysis, chorus-like elements triggered by PLHR can be wrongly considered as natural chorus. These drifting elements can also appear as filamentary structures emerging at the upper frequencies of a hiss band or quasiperiodic emissions. There are events where the elements even have certain similarities to quasiperiodic emissions. The difference between these elements and the chorus emissions will be emphasized.
机译:低空卫星DEMETER(地震区域传输的电磁辐射检测)检测到许多不同的辐射,本文的目的是研究具有频率漂移元素的极低频(ELF)电磁波。 。结果表明,只有其中一部分可以被视为通常的合唱。这些合唱元素在赤道平面内发射,其传播分析表明,它们在电离层的低空向下行进,被卫星探测到。对2008年5月8日在北半球和南半球沿同一轨道记录的一个显着事件的研究表明,这种传播机制在电离层波谷的位置得到了加强,这对应于更高海拔的等离子暂停。已经观察到,通常的低频合唱元件总是处于与由质子陀螺频率附近的截止频率所限制的嘶嘶声频带重叠的频带中。其他漂移元素可归因于PLHR(电力线谐波辐射)触发的发射。这意味着,如果没有高分辨率的光谱分析,PLHR触发的类合唱元素会被错误地视为自然合唱。这些漂移元素也可能以丝状结构的形式出现在嘶嘶声带或准周期性发射的较高频率处。在某些情况下,元素甚至与准周期发射有某些相似性。这些元素与合唱发射之间的差异将被强调。

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