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Impact of heliogeophysical disturbances on ionospheric HF channels
Authors:VP Uryadov  FI Vybornov  AA Kolchev  GG Vertogradov  MS Sklyarevsky  IA Egoshin  VV Shumaev  AG Chernov
Institution:1. Radiophysical Research Institute Nizhny Novgorod State University, Nizhny Novgorod 603950, Russia;2. Kazan Federal University, Kazan 420000, Russia;3. Southern Federal University, Rostov-on-Don 344006, Russia;4. Mari State University, Yoshkar-Ola 424000, Russia;5. SITCOM LLC, Yoshkar-Ola 424031, Russia
Abstract:The article presents the results of the observation of a strong magnetic storm and two X-ray flares during the summer solstice in 2015, and their impact on the HF signals characteristics in ionospheric oblique sounding. It was found that the negative phase of the magnetic storm led to a strong degradation of the ionospheric channel, ultimately causing a long blackout on paths adjacent to subauroral latitudes. On mid-latitude paths, the decrease in 1FMOF reached ~50% relative to the average values for the quiet ionosphere. It is shown that the propagation conditions via the sporadic Es layer during the magnetic storm on a subauroral path are substantially better than those for F-mode propagation via the upper ionosphere. The delay of the sharp decrease in 1FMOF during the main phase of the magnetic storm allowed us to determine the propagation velocity of the negative phase disturbances (~100 m/s) from subauroral to mid-latitude ionosphere along two paths: Lovozero – Yoshkar-Ola and Cyprus – Nizhny Novgorod. It is shown that both the LOF and the signal/noise ratio averaged over the frequency band corresponding to the propagation mode via the sporadic Es layer correlate well with the auroral AE index. Using an over-the-horizon chirp radar with a bistatic configuration on the Cyprus – Rostov-on-Don path, we located small-scale scattering irregularities responsible for abnormal signals in the region of the equatorial boundary of the auroral oval.
Keywords:Storm and substorms  X-ray flare  Ionospheric propagation  Ionospheric disturbances  Ionospheric irregularities
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