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On the occurrence of ground observations of ELF/VLF magnetospheric amplification induced by the HAARP facility

机译:关于由HAARP设施引起的ELF / VLF磁层放大的地面观测的发生

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摘要

The ionospheric heating facility of the High Frequency Active Auroral Research Program (HAARP) has been used extensively in the last 3 years for injection of ELF/VLF waves into the magnetosphere via modulated heating of the overhead auroral electrojet currents. Of particular interest are waves that are observed to be nonlinearly amplified after interaction with hot plasma electrons in the Earth's radiation belts. Past results have shown HAARP to be an effective platform for controlled studies of wave particle interactions in the Earth's magnetosphere. A summary of the experimental results is provided in the context of dependencies on geomagnetic conditions and transmitter parameters. It is deduced that the primary variable that is associated with successful ground observations of HAARP-induced magnetospheric amplification is availability of magnetospheric wave guiding structures. Such structures are found to be most prevalent under quiet geomagnetic conditions following a disturbance when the plasmapause extends to the latitude of the HAARP facility or higher. Strong electrojet currents and high amplitudes of generated ELF/VLF signals observed on the ground are poor indicators of observation probability on a day to day basis although variation of these variables can be important on minute and second timescales. Frequency-time formats with continuously increasing ELF/VLF frequency show preferential amplification as predicted by nonlinear theory of electron trapping. Amplification of signals is also found to be possible for signals with noncoherent bandwidths of up to 30 Hz.
机译:在过去的三年中,高频主动极光研究计划(HAARP)的电离层加热设施已被广泛使用,用于通过调节性加热顶空极光电喷射电流将ELF / VLF波注入磁层。特别令人关注的是与地球辐射带中的热等离子体电子相互作用后被非线性放大的波。过去的结果表明,HAARP是用于控制研究地球磁层中波粒相互作用的有效平台。在对地磁条件和变送器参数的依赖性的背景下,提供了实验结果的摘要。可以推断出,与成功地对HAARP引起的磁层放大进行地面观测有关的主要变量是磁层波导结构的可用性。当等离子体暂停扩展到HAARP设施的纬度或更高的纬度时,在干扰后的安静地磁条件下,这种结构最为普遍。在地面上观察到的强电喷射电流和高幅度的生成的ELF / VLF信号每天都无法很好地指示观察概率,尽管这些变量的变化在分钟和第二时间范围内很重要。 ELF / VLF频率不断增加的频率-时间格式显示出优先放大,这是电子陷阱的非线性理论所预测的。对于非相干带宽高达30 Hz的信号,信号放大也是可能的。

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