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Statistical correlation of spectral broadening in VLF transmitter signal and low-frequency ionospheric turbulence from observation on DEMETER satellite

机译:从DEMETER卫星观测到的VLF发射机信号频谱展宽与低频电离层湍流的统计相关性

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In our earlier papers we have found the effect of VLF transmitter signal depression over epicenters of the large earthquakes from observation on the French DEMETER satellite that can be considered as new method of global diagnostics of seismic influence on the ionosphere. At present paper we investigate a possibility VLF signal-ionospheric turbulence interaction using additional characteristic of VLF signal-spectrum broadening. This characteristic is important for estimation of the interaction type: linear or nonlinear scattering. Our main results are the following: There are two zones of increased spectrum broadening, which are centered near magnetic latitudes Phi=+/- 10 degrees and Phi=+/- 40 degrees. Basing on the previous case study research and ground ionosonde registrations, probably it is evidence of nonlinear (active) scattering of VLF signal on the ionospheric turbulence. However occurrence rate of spectrum broadening in the middle-latitude area is higher than in the near-equatorial zone (similar to 15-20% in comparison with similar to 100% in former area) that is probably coincides with the rate of ionospheric turbulence. From two years statistics of observation in the selected 3 low-latitude regions and 1 middle-latitude region inside reception area of VLF signal from NWC transmitter we find a correlation of spectrum broadening neither with ion-cyclotron noise (f=150-500 Hz), which possibly means poor representation of the turbulence by the noise due to its mixture with natural ELF emission (which correlates with whistler), nor with magnetic storm activity. We find rather evident correlation of ion-cyclotron frequency noise, VLF signal depression and weak correlation of spectrum broadening with seismicity in the middle-latitude region over Japan. But in the low-latitude regions we do not find such a correlation. Statistical decrease of VLF signal supports our previous case study results. However rather weak spectrum broadening-seismicity statistical correlation means probably that passive scattering prevails upon nonlinear (active) one.
机译:在我们较早的论文中,我们从法国DEMETER卫星上的观测中发现了VLF发射机信号衰减对大地震震中的影响,可以将其视为全球诊断电离层影响的新方法。目前,我们利用VLF信号频谱展宽的附加特征,研究了VLF信号与电离层湍流相互作用的可能性。此特性对于估计相互作用类型很重要:线性或非线性散射。我们的主要结果如下:有两个频谱扩展增加的区域,它们位于磁纬度Phi = + /-10度和Phi = + /-40度附近。根据先前的案例研究和地面离子探空仪的记录,可能是VLF信号在电离层湍流上的非线性(主动)散射的证据。然而,中纬度地区光谱展宽的发生率高于赤道附近地区(与前一个地区的100%相似,约为15-20%),这可能与电离层湍流的速率相吻合。从对NWC发射器的VLF信号接收区域内选定的3个低纬度区域和1个中纬度区域的两年观察统计中,我们发现频谱展宽与离子回旋加速器噪声均无相关性(f = 150-500 Hz) ,这可能意味着由于噪声与自然ELF发射(与吹口哨相关)或电磁风暴活动的混合,使得噪声无法很好地表示湍流。在日本中纬度地区,我们发现离子回旋加速器频率噪声,VLF信号衰减和频谱展宽与地震活动之间的相关性很明显。但是在低纬度地区我们没有发现这种相关性。 VLF信号的统计减少支持了我们之前的案例研究结果。然而,较弱的频谱扩展-地震统计相关性可能意味着,在非线性(主动)雷达上,被动散射占主导地位。

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