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ELF/VLF Perturbations Above the Haarp Transmitter Recorded by the Demeter Satellite in the Upper Ionosphere

机译:上层电离层的Demeter卫星记录的Haarp发射器上方的ELF / VLF扰动

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摘要

In the studies of the data received from DEMETER (orbit altitude above the Earth is about 700 km), we detected for the first time electromagnetic perturbations, which are due to the ionospheric modification by HAARP, a high-power high-frequency transmitter, simultaneously in the extremely low-frequency (ELF, below 1200 Hz) and very low-frequency (VLF, below 20 kHz) ranges. Of the thirteen analyzed flybys of the satellite above the heated area, the ELF/VLF signals were detected in three cases in the daytime (LT = 11-12 h), when the minimum distance between the geomagnetic projections of the satellite and the heated area center on the Earth's surface did not exceed 31 km. During the nighttime flybys, the ELF/VLF perturbations were not detected. The size of the perturbed region was about 100 km. The amplitude, spectrum, and polarization of the ELF perturbations were analyzed, and their comparison with the characteristics of natural ELF noise above the HAARP transmitter was performed. In particular, it was shown that in the daytime the ELF perturbation amplitude above the heated area can exceed by a factor of 3 to 8 the amplitude of natural ELF noise. The absence of the nighttime records of artificial ELF/VLF perturbations above the heated area can be due to both the lower frequency of the heating signal, at which the heating occurs in the lower ionosphere, and the higher level of natural noise. The spectrum of the VLF signals related to the HAARP transmitter operation had two peaks at frequencies of 8 to 10 kHz and 15 to 18 kHz, which are close to the first and second harmonics of the lower-hybrid resonance in the heated area. The effect of the whistler wave propagation near the lower-hybrid resonance region on the perturbation spectrum recorded in the upper ionosphere for these signals has been demonstrated. In particular, some of the spectrum features can be explained by assuming that the VLF signals propagate in quasiresonance, rather than quasilongitudinal, regime. It is noted that the profile and dynamics of the ELF perturbation frequency spectrum conform to the assumption of their connection with quasistatic small-scale electron-density inhomogeneities occurring in the heated region and having lifetimes of a few seconds or more. The possible mechanisms of the ELF/VLF perturbation formation in the ionospheric plasma above the high-latitude HAARP facility at the DEMETER flyby altitudes are discussed.
机译:在对从DEMETER(地球上方的轨道高度约为700 km)接收的数据进行的研究中,我们首次检测到电磁扰动,这是由于高功率高频发射机HAARP对电离层所做的修改而引起的。在极低频(ELF,低于1200 Hz)和极低频(VLF,低于20 kHz)范围内。在经过分析的加热区域上方的13个飞越卫星中,白天(LT = 11-12 h)的三种情况下,当卫星的地磁投影与加热区域之间的最小距离时,检测到ELF / VLF信号地球表面的中心距离不超过31公里。在夜间飞越期间,未检测到ELF / VLF扰动。扰动区域的大小约为100公里。分析了ELF扰动的幅度,频谱和极化,并与HAARP发射器上方的自然ELF噪声的特征进行了比较。特别地,已经表明,在白天,加热区域上方的ELF扰动幅度可以超过自然ELF噪声幅度的3到8倍。没有夜间在加热区域上方出现人工ELF / VLF扰动的记录,可能是由于加热信号的频率较低(在较低电离层中发生加热)引起的,也归因于较高的自然噪声水平。与HAARP发射器操作有关的VLF信号频谱在8至10 kHz和15至18 kHz的频率处有两个峰值,它们接近加热区域中下混合共振的一次和二次谐波。已经证明了惠斯勒波在下混合共振区域附近传播对这些信号在上电离层中记录的摄动谱的影响。特别是,可以通过假设VLF信号以准谐振而不是准纵向的方式传播来解释某些频谱特征。应当指出,ELF摄动频谱的轮廓和动力学符合它们与在加热区域中发生并具有几秒钟或更长的寿命的准静态小规模电子密度不均匀性有关的假设。讨论了DEMETER飞越高度的高纬度HAARP设施上方电离层等离子体中ELF / VLF扰动形成的可能机制。

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