Dynamics of the Earth’s magnetopause’s subsolar location during solar cycle 24 in relation to the phases of geomagnetic storms of CME origin
Keywords:
Magnetopause, Subsolar position, ICME storm, Empirical model, Solar windAbstract
This article analyses the response of the subsolar position (Ro) of the Earth’s magnetopause to geo-effective ICME storms in solar cycle 24, ranging from minor to extreme intensity, based on the model developed by Shue et al. (1998) and 1-minute OMNI data. The study combines a phase analysis of representative storms with an analysis of the influence of Ro variability on solar wind parameters, without phase distinction (correlations, time lags, Granger causality, and adjustments). The results show that the dynamics of Ro are driven almost exclusively by Pd in the minor and moderate storms studied, while a synergistic shift appears in strong and extreme storms, where magnetic reconnection or even magnetopause erosion becomes decisive. The crossing of the magnetopause at the subsolar point of the geosynchronous orbit (<6.6 Re) is a signature of the main phase of the storm on 22 June 2015 (strong) and the initial and main phase of the storm on 17 March 2015 (extreme). The autocorrelation correction confirms the robustness of the high correlations observed. The relationships between Ro and Pd remain linear except for the extreme event, while Bz requires polynomial adjustments in most of the events studied. Variations in Pd and N precede those in Ro by 1 min to 3 min and significantly influence those in Ro, with a maximum effect at lag = 0 min in almost all events. The predominant response of Ro to the magnetic constraint imposed by B is delayed, with lag varying from 30 min to 7 min depending on the event, except in the extreme case where lag = 0 min, controlled by the structure of the magnetosphere, and Bz plays a secondary role except in the extreme case where it contributes to magnetic reconnection and magnetopause erosion.
Published
How to Cite
Issue
Section
Copyright (c) 2025 Boukary DAMIBA, Christian ZOUNDI, Abdoul Kader SEGDA (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- A. F. Adedotun, T. Latunde, O. A. Odusanya, Modelling and Forecasting Climate Time Series with State-Space Model , Journal of the Nigerian Society of Physical Sciences: Volume 2, Issue 3, August 2020
- Gabriel O. Odekina, Adedayo F. Adedotun, Ogbu F. Imaga, Modeling and Forecasting the Third wave of Covid-19 Incidence Rate in Nigeria Using Vector Autoregressive Model Approach , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- Peter Chibuike Okoye, Samuel Ogochukwu Azi, Taoreed O. Owolabi, Perovskite tetragonality modeling for functional properties enhancement using Newtonian search based support vector regression computational method , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- Ogechi Regina Amanso, Jeconia Okelo Abonyo, Phineas Roy Kiogora, Obiora Cornelius Collins, A novel mathematical model for transmission dynamics of HPV and cervical cancer progression with cancer-reliant awareness , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 2, May 2026 (In Progress)
- Emmanuel Gbenga Dada, Aishatu Ibrahim Birma, Abdulkarim Abbas Gora, Ensemble machine learning algorithm for cost-effective and timely detection of diabetes in Maiduguri, Borno State , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 4, November 2024
- Adeyemi Olukayode Binuyo, Eigenvalue Elasticity and Sensitivity Analyses of the Transmission Dynamic Model of Corruption , Journal of the Nigerian Society of Physical Sciences: Volume 1, Issue 1, February 2019
- G. A. Shewa, F. I. Ugwuowo, Combating the Multicollinearity in Bell Regression Model: Simulation and Application , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 3, August 2022
- Adefemi Adeniran, A. A. Sodipo, C. G. Udomboso, A Modifed Forced Randomized Response Model , Journal of the Nigerian Society of Physical Sciences: Volume 2, Issue 1, February 2020
- Peter Urane Achimugwu, Mathew Ngugi Kinyanjui, David Mumo Malonza, Analysis of a fractional order climate model due to excessive emission and accumulation of carbon dioxide in the atmosphere , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 4, November 2023
- Gurpreet Singh Tuteja, Tapshi Lal, A study of growth of COVID-19 with super-spreaders using the modified SIR model including iceberg phenomenon , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 2, May 2024
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- Nongobsom Bazié, Christian Zoundi, M'BI Kaboré, Alfred Jean Stéphane Dama, Frédéric Ouattara, Response of the magnetospheric convection electric field (MCEF) to geomagnetic storms during the solar cycle 24 declining phase , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 4, November 2025

