Geomagnetic Storm Impacts On The Ionosphere Over Türkiye During Solar Cycle 25: Focusing On The May 2024 Storm

Fuente: arXiv
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Autores principales: Eraydın, Ege, Taşdemir, Seval, Çınar, Deniz Cennet, Özırmak, Songül, Canbay, Remziye
Formato: Preprint
Publicado: 2026
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author Eraydın, Ege
Taşdemir, Seval
Çınar, Deniz Cennet
Özırmak, Songül
Canbay, Remziye
author_facet Eraydın, Ege
Taşdemir, Seval
Çınar, Deniz Cennet
Özırmak, Songül
Canbay, Remziye
contents The interaction between solar activity and Earth's magnetosphere magnetosphere-ionosphere system often results in geomagnetic storms that disturb ionospheric electron density. In this study, we analyse the ionospheric response to selected geomagnetic storm events during the Solar Cycle 25, focusing on the mid latitude region of Earth, including Turkey. Hourly Kp and Dst indices obtained from the OMNI database are compared with global TEC maps provided by NASA CDDIS. Storm time anomalies include short term enhancements and irregularities in electron content, correlated with geomagnetic activity. Unlike equatorial regions, mid-latitude ionospheric responses exhibit distinct features such as Storm Enhanced Density (SED). These findings emphasize the importance of continuous space weather monitoring for navigation and communication systems.
format Preprint
id arxiv_https___arxiv_org_abs_2604_01276
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Geomagnetic Storm Impacts On The Ionosphere Over Türkiye During Solar Cycle 25: Focusing On The May 2024 Storm
Eraydın, Ege
Taşdemir, Seval
Çınar, Deniz Cennet
Özırmak, Songül
Canbay, Remziye
Solar and Stellar Astrophysics
High Energy Astrophysical Phenomena
The interaction between solar activity and Earth's magnetosphere magnetosphere-ionosphere system often results in geomagnetic storms that disturb ionospheric electron density. In this study, we analyse the ionospheric response to selected geomagnetic storm events during the Solar Cycle 25, focusing on the mid latitude region of Earth, including Turkey. Hourly Kp and Dst indices obtained from the OMNI database are compared with global TEC maps provided by NASA CDDIS. Storm time anomalies include short term enhancements and irregularities in electron content, correlated with geomagnetic activity. Unlike equatorial regions, mid-latitude ionospheric responses exhibit distinct features such as Storm Enhanced Density (SED). These findings emphasize the importance of continuous space weather monitoring for navigation and communication systems.
title Geomagnetic Storm Impacts On The Ionosphere Over Türkiye During Solar Cycle 25: Focusing On The May 2024 Storm
topic Solar and Stellar Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2604.01276