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首页> 外文期刊>Radiophysics and quantum electronics >Influence of Horizontal Ionosphere Nonuniformity on the Spatial Distribution of Ultralow-Frequency Magnetic Fields from Ground-Based Sources
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Influence of Horizontal Ionosphere Nonuniformity on the Spatial Distribution of Ultralow-Frequency Magnetic Fields from Ground-Based Sources

机译:水平电离层不均匀性对基于地面源超低频磁场空间分布的影响

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摘要

A significant difference was found in the amplitude and polarization spectra of ULF magnetic noise at stations with a base of 120 km during periods of absence of regional thunderstorm activity. A simultaneous analysis of low-frequency data and ionosonde data allowed us to conclude that the difference in the main parameters of the polarization spectrum at two stations is due to the appearance of sporadic E-s layers having a nonuniform horizontal intensity distribution with characteristic scales of the order of the base between stations. A difference in the depth of variations in the polarization parameter epsilon was also found during the ionosphere recovery after magnetic storms. It could be related with Es layers, which had not only a nonuniform intensity distribution, but were also located at different altitudes. A difference was found in the frequency scales of the spectral resonance structure during recording of time variations of its fundamental frequencies. Numerical calculations of the parameter epsilon with specifying model E-s layers and electron-density profiles corrected at the altitudes of the ionospheric F layer adequately explained the observed difference in the magnetic noise spectra and allowed us to determine the altitudes at which the horizontal ionospheric irregularity existed. The studies were carried out on the basis of records of horizontal magnetic components at Radiophysical Research Institute midlatitude observatories Novaya Zhizn (56 degrees N, 45.74 degrees E) and Staraya Pustyn (55.66 degrees N, 43.63 degrees E, 120 km east of the first reception point).
机译:在缺乏区域雷暴活动期间120 km的电台的ULF磁噪声的幅度和偏振光谱中发现了显着差异。对低频数据和Ionosonde数据的同时分析允许我们得出结论,两个站的偏振谱的主要参数的差异是由于散核ES层的外观,其具有不均匀的水平强度分布,具有顺序的特征尺度站之间的基座。在磁风暴后的电离层恢复期间也发现了偏振参数ε的差异深度的差异。它可能与ES层相关,其不仅具有非均匀强度分布,而且还位于不同的高度。在其基本频率的时间变化记录期间,在光谱谐振结构的频率尺度中找到了差异。具有指定模型E-S层的参数epsilon的数值计算和在电离层F层的高度上校正的电子密度曲线充分地解释了磁噪声光谱中观察到的差异,并允许我们确定存在水平电离层不规则性的高度。这些研究是在辐射物理研究所中辐射磁性成分的记录中进行的射频观察区Novaya Zhizn(56摄氏度,45.74度)和Staraya Pustyn(55.66度N,43.63度E,在第一次接待以东120公里观点)。

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