Response of total electron content to the October 25, 2022 partial solar eclipse from high to low latitudes in the Euro-Asian region

Author:

Chernogor Leonid F.ORCID,Mylovanov Yurii B.,Zhdanko Yevhen H.ORCID

Funder

Ministry of Education and Science of Ukraine

Publisher

Elsevier BV

Reference47 articles.

1. Coordinated ground-based and space-borne observations of ionospheric response to the annular solar eclipse on 26 December 2019;Aa;J. Geophys. Res.-Space.,2020

2. Solar-eclipse-induced perturbations at mid-latitude during the 21 August 2017 event;Adekoya;Ann. Geophys.,2019

3. Afraimovich, E.L., Perevalova, N.P., 2006. GPS-monitoring of the Earth’s upper atmosphere. Irkutsk: Solar–Terrestrial Pysics Institute SD RAS: SI SC RRS ESSC SD RAMS, 479 p. (in Russian).

4. Ionospheric effects of the solar eclipse of March 9, 1997, as deduced from GPS data;Afraimovich;Geophys. Res. Lett.,1998

5. Effects of the August 11, 1999 total solar eclipse as deduced from total electron content measurements at the GPS network;Afraimovich;J. Atmos. Sol.-Terr. Phys.,2002

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