Paper
15 December 2021 Sudden phase anomalies of VLF radio transmitters signals (11.9 kHz) of RSDN-20 system registered in Yakutsk during 2009-2017
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Proceedings Volume 11916, 27th International Symposium on Atmospheric and Ocean Optics, Atmospheric Physics; 119167X (2021) https://doi.org/10.1117/12.2603367
Event: 27th International Symposium on Atmospheric and Ocean Optics, Atmospheric Physics, 2021, Moscow, Russian Federation
Abstract
Sudden phase anomalies of VLF signals (11.9 kHz) of RSDN-20 system (Novosibirsk, Krasnodar and Khabarovsk transmitters) registered in Yakutsk during 2009-2017 are considered. A catalog of X-ray solar flares from C3.0 class and higher is compiled for the period 2009 – 2017. Each flare is associated with the daily average value of the F10.7 index in solar flux units to characterize the background solar X-ray radiation. The array is divided into intervals corresponding to the minimum solar activity (SA): the F10.7 index is less than 122 sfu (quartile 25%), maximum SA: index F10.7 is greater than 160 sfu (75% quartile) and medium SA: 122 <F10.7 <160. In winter the SPA sensitivity to the intensity of the X-ray flux of solar flares is decreased from the solar activity (SA) minimum to the maximum one. There is an uneven distribution of the intensity of the background X-ray radiation from season to season. For the 24th solar cycle activity the main maxima of the F10.7 index and the maxima of the intensity of the solar background X-ray radiation fell on the winter seasons. By ground-based methods (based on data on the SPA of VLF radio signals and average daily values of F10.7) it is obtained satisfactory estimates of the intensity of the X-ray radiation flux during solar flares.
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A. A. Korsakov, V. I. Kozlov, and R. R. Karimov "Sudden phase anomalies of VLF radio transmitters signals (11.9 kHz) of RSDN-20 system registered in Yakutsk during 2009-2017", Proc. SPIE 11916, 27th International Symposium on Atmospheric and Ocean Optics, Atmospheric Physics, 119167X (15 December 2021); https://doi.org/10.1117/12.2603367
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