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Detection of a large-scale irregularity in the region of the main ionospheric trough according to the data of topside sounding on board the Intercosmos-19 satellite

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Abstract

Complicated ionograms of topside sounding on board the Intercosmos-19 satellite, which were registered on November 26, 1980, in the dusk sector (1800 LT) at the latitudes of the equatorward wall (55°–62° ILAT) of the main ionospheric trough (MIT), are analyzed. They are characterized by the presence of two extra traces at distances larger than the main traces. Approaching the MIT minimum, all traces become more scattered, converge, and join into one strongly diffusive trace. An attempt of interpretation of the complicated ionograms on the basis of trajectory calculations performed by the method of characteristics in the “complex” two-dimensional version (in two mutually intersecting planes) is undertaken. The modeling shows that the extra traces could be related to the presence of a large-scale irregularity stretched along the geomagnetic meridian at the equatorward wall of the MIT. The calculations make it possible to estimate the parameters of the irregularity: the intensity is δfoF2 ∼ 30%, the length is several hundred kilometers, the semi-thickness is 50–60 km, and the height is 350 km. The possible formation causes of the irregularity are discussed. The intensification of the diffuseness of all traces is related to the increase in the intensity of small-scale irregularities, which is usually observed when approaching the MIT minimum.

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References

  • Apparatura dlya issledovaniya vneshnei ionosfery (Equipment for Studying the Topside Ionosphere), Moscow: IZMIRAN, 1980, p. 303.

  • Ben’kova, N.P., Kozlov, E.F., Kochenova, N.A., Samorokin, N.I., and Fligel’, M.D., Struktura subavroral’noi ionosfery (Structure of the Subauroral Ionosphere), Moscow: Nauka.

  • Gershman, B.N., Erukhimov, L.M., and Yashin, Yu.Ya., Volnovye yavleniya v ionosfere i kosmicheskoi plazme (Wave Phenomena in the Ionosphere and Space Plasma), Moscow: Nauka, 1984.

    Google Scholar 

  • Karpachev, A.T., Deminov, M.G., and Afonin, V.V., Model of the Mid-Latitude Ionospheric Trough on the Base of Cosmos-900 and Intercosmos-19 Satellites Data, Adv. Space Res., 1996, vol. 18, no. 6, pp. 221–230.

    Article  Google Scholar 

  • Kravtsov, Yu.A. and Orlov, Yu.I., Geometricheskaya optika neodnorodnykh sred (Ray Optics of Inhomogeneous Mediums), Moscow: Nauka, 1980.

    Google Scholar 

  • Proc. IEEE, 1969, vol. 57, no. 6.

    Google Scholar 

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Correspondence to A. T. Karpachev.

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Original Russian Text © A.T. Karpachev, G.A. Zhbankov, V.A. Telegin, 2012, published in Geomagnetizm i Aeronomiya, 2012, Vol. 52, No. 2, pp. 219–225.

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Karpachev, A.T., Zhbankov, G.A. & Telegin, V.A. Detection of a large-scale irregularity in the region of the main ionospheric trough according to the data of topside sounding on board the Intercosmos-19 satellite. Geomagn. Aeron. 52, 204–210 (2012). https://doi.org/10.1134/S0016793212020065

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  • DOI: https://doi.org/10.1134/S0016793212020065

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