Abstract
The data of simultaneous measurements of the polarization jet from the Yakutsk ground-based vertical radio sounding station and satellite observations of narrow electron density dips or fast westward drifts of the ionospheric plasma from satellites of the Defense Meteorological Satellite Program (DMSP) series. The events are based on ground-based ionospheric measurements and cover the time interval from March 1989 to December 2015, i.e. about 26 years. The simultaneity of observations is ensured by a time period of approximately ±1.5 h from the time of registration of signs of a polarization jet according to the data of a ground-based ionospheric sounding station or by the an orbital period of DMSP satellites around the Earth. Based on data of long-term simultaneous satellite and ground-based measurements (126 events), it was shown and confirmed that the presence of characteristic additional traces of reflections on ionograms indicates the presence of narrow and fast drifts of ionospheric plasma or a polarization jet near the zenith of the observation station. It is also shown that the quasi-instantaneous longitude extent of a polarization jet at subauroral latitudes can in some cases reach 8 h or 120° by longitude.
This is a preview of subscription content, access via your institution.



REFERENCES
Galperin, Yu.I., Ponomarev, V.N., and Zosimova, A.G., Direct measurements of ion drift velocity in the upper ionosphere during a magnetic storm. Part 2: Results of measurements during the November 3, 1967 magnetic storm, Kosm. Issled., 1973, vol. 11, no. 2, pp. 284–296.
Spiro, R.W., Heelis, R.A., and Hanson, W.B., Rapid subauroral ion drifts observed by Atmospheric Explorer C, Geophys. Res. Lett., 1979, vol. 6, no. 8, pp. 657–660.
Maynard, N.C., Aggson, T.L., and Heppner, J.P., Magnetospheric observation of large subauroral electric fields, Geophys. Res. Lett., 1980, vol. 7, no. 11, pp. 881–884.
Rich, F.J., Burke, W.J., Kelley, M.C., and Smiddy, M., Observations of field-aligned currents in association with strong convection electric fields at subauroral latitudes, J. Geophys. Res., 1980, vol. 85, no. A5, pp. 2335–2340.
Providakes, J.F., Kelley, M.K., Swartz, W.E., et al., Radar and optical measurements of ionospheric processes associated with intense subauroral electric fields, J. Geophys. Res., 1989, vol. 94, no. A5, pp. 5350–5366.
Filippov, V.M., Reshetnikov, D.D., Khalipov, V.L., et al., Complex observations of narrow ionization dips in the F region by ground-based and satellite methods, Kosm. Issled., 1989, vol. 27, no. 4, pp. 568–584.
Gal’perin, Yu.I., Sivtseva, L.D., Filippov, V.M., and Khalipov, V.L., Subavroral’naya verkhnyaya ionosfera (Subauroral Upper Ionosphere), Novosibirsk: Nauka, 1990.
Karlsson, T., Marklund, G.T., Blomberg, L.G., and Malkki, A., Subauroral electric fields observed by the Freja satellite: A statistical study, J. Geophys. Res., 1998, vol. 103, no. A3, pp. 4327–4314.
Khalipov, V.L., Galperin, Yu.I., Stepanov, A.E., and Shestakova, L.V., Formation of a polarization jet during the expansion phase of a substorm: Results of ground-based measurements, Cosmic Res., 2001, vol. 39, no. 3, pp. 226–235.
He, F., Zhang, X.-X., and Chen, B., Solar cycle, seasonal, and diurnal variations of subauroral ion drifts: Statistical results, J. Geophys. Res., 2014, vol. 119, no. 6, pp. 5076–5086. https://doi.org/10.1002/2014JA019807
Sinevich, A.A., Chernyshov, A.A., Chugunin, D.V., et al., Spatial structure of polarization jet according to NorSat-1 and Swarm satellite data, Cosmic Res., 2021, vol. 59, no. 6, pp. 463–471. https://doi.org/10.31857/S0023420621060091
Anderson, P.C., Heelis, R.A., and Hanson, W.B., The ionospheric signatures of rapid subauroral ion drifts, J. Geophys. Res., 1991, vol. 96, no. A4, pp. 5785–5792.
Karlsson, T., Marklund, G.T., Blomberg, L.G., and Malkki, A., Subauroral electric fields observed by the Freja satellite: A statistical study, J. Geophys. Res., 1998, vol. 103, no. A3, pp. 4327–4314.
Anderson, P.C., Hanson, W.B., Heelis, R.A., et al., A proposed production model of rapid subauroral ion drifts and their relationship to substorm evolution, J. Geophys. Res., 1993, vol. 98, no. A4, pp. 6069–6078.
Anderson, P.C., Heelis, R.A., and Hanson, W.B., The ionospheric signatures of rapid subauroral ion drifts, J. Geophys. Res., 1991, vol. 96, no. A4, pp. 5785–5792.
Stepanov, A.E., Khalipov, V.L., Golikov, I.A., and Bondar’, E.D., Polyarizatsionnyi dzhet: uzkie i bystrye dreify subavroral’noi ionosfernoi plazmy (Polarization Jet: Narrow and Fast Drifts of Subauroral Ionospheric Plasma), Yakutsk: Izd. dom Severo-Vost. Fed. Univ., 2017.
He, F., Zhang, X.-X., Chen, B., and Fok, M.-C., Plasmaspheric trough evolution under different conditions of subauroral ion drift, Sci. China Tech. Sci., 2012, vol. 55, no. 5, pp. 1287–1294. https://doi.org/10.1007/s11431-012-4781-1
Mishin, E.V. and Puhl-Quinn, P.A., SAID: Plasmaspheric short circuit of substorm injections, Geophys. Res. Lett., 2007, vol. 34, p. L24101. https://doi.org/10.1029/2007GL031925
Mishin, E.V. and Streltsov, A.V., Nonlinear Wave and Plasma Structures in the Auroral and Subauroral Geospace, New York: Elsevier Science, 2022.
Shul’gina, N.V., Sporadic formations in the F region, Avroral’nye yavleniya 70-II (Auroral Phenomena 70-II), Apatity: Kazan. Fil. Akad. Nauk SSSR, 1974, pp. 44–46.
Reshetnikov, D.D., Filippov, V.M., Baishev, D.G., et al., Morphology and dynamics of narrow ionization dips in the subauroral F region, Preprint of the Yakutsk Department of the Siberian Branch of the USSR Acad. Sci., 1987.
Filippov, V.M., Reshetnikov, D.D., Khalipov, V.L., et al., Complex observations of narrow ionization dips in the F region by ground-based and satellite methods, Kosm. Issled., 1989, vol. 27, no. 4, pp. 568–584.
Freeman, M.P., Southwood, D.J., Lester, M., Yeoman, T.K., and Reeves, G.D., Substorm-associated radar auroral surges, J. Geophys. Res., 1992, vol. 97, no. A8, pp. 12173–12185.
Shand, B.A., Lester, M., and Yeoman, T.K., Substorm associated radar auroral surges: a statistical study and possible generation model, Ann. Geophys., 1998, vol. 16, pp. 441–449.
Khalipov, V.L., Gal’perin, Yu.I., Lisakov, Yu.V., et al., Diffuse auroral zone. II. Formation and dynamics of the polar edge of the subauroral ionospheric trough in the evening sector, Kosm. Issled., 1977, vol. 15, no. 5, pp. 708–724.
Stepanov, A.E., Kobyakova, S.E., and Khalipov, V.L., FAST subauroral drifts of ionosphere plasma according to data from Yakut meridional chain of stations, Soln.-Zemn. Fiz., 2019, vol. 5, no. 4, pp. 73–79. https://doi.org/10.12737/szf-54201908
He, F., Zhang, X.-X., and Chen, B., Solar cycle, seasonal, and diurnal variations of subauroral ion drifts: Statistical results, J. Geophys. Res., 2014, vol. 11, no. 6, pp. 5076–5086.
Stepanov, A.E., Gololobov, A.Yu., Khalipov, V.L., and Golikov, I.A., Variations in ionospheric parameters during the formation of a polarization jet, Geomagn. Aeron. (Engl. Transl.), 2021, vol. 61, no. 1, pp. 68–72. https://doi.org/10.1134/S001679322101014X
Stepanov, A.E., Golikov, I.A., Popov, V.I., Bondar’, E.D., and Khalipov, V.L., Structural features of the subauroral ionosphere during the origination of the polarization jet, Geomagn. Aeron. (Engl. Transl.), 2011, vol. 51, no. 5, pp. 633–639.
Rukovodstvo URSI po interpretatsii i obrabotke ionogramm (URSI Guide to Ionogram Interpretation and Processing), Mednikova, N.V., Ed., Moscow: Nauka, 1977.
ACKNOWLEDGMENTS
This work was carried out within the framework of a state order, state registration no. 122011700182-1. The authors thank the NOAA/NESDIS National Geophysical Data Center for providing satellite data F8–F19 DMSP IDM, SSJ/4, and SSM satellite data. We are grateful to the World Data Center for Geomagnetism in Kyoto (https:// wdc.kugi.kyoto-u.ac.jp) for providing data on geomagnetic-activity indices. The authors also express their heartfelt gratitude to L.N. Gabets, N.N. Pavlova, and A.O. Ershova for nonstandard processing of ionospheric materials from the Yakut chain of ionospheric stations.
Author information
Authors and Affiliations
Corresponding author
Rights and permissions
About this article
Cite this article
Stepanov, A.E., Khalipov, V.L., Kobyakova, S.E. et al. Simultaneous Ground and Satellite Measurements of the Polarization Jet at the Yakutsk Station Meridian. Cosmic Res 61, 283–289 (2023). https://doi.org/10.1134/S0010952523700314
Received:
Revised:
Accepted:
Published:
Issue Date:
DOI: https://doi.org/10.1134/S0010952523700314