[HTML][HTML] Ionospheric–thermospheric responses to geomagnetic storms from multi-instrument space weather data

R Shahzad, M Shah, MA Tariq, A Calabia… - Remote Sensing, 2023 - mdpi.com
We analyze vertical total electron content (vTEC) variations from the Global Navigation
Satellite System (GNSS) at different latitudes in different continents of the world during the …

Longitudinal responses of the equatorial/low‐latitude ionosphere over the oceanic regions to geomagnetic storms of May and September 2017

AO Akala, EO Oyeyemi, PO Amaechi… - Journal of …, 2020 - Wiley Online Library
This study presents the longitudinal dependence of responses of the equatorial/low‐latitude
ionosphere over the oceanic regions to geomagnetic storms of 28 May and 8 September …

[HTML][HTML] Ionospheric responses to the June 2015 geomagnetic storm from ground and LEO GNSS observations

C Gao, S Jin, L Yuan - Remote Sensing, 2020 - mdpi.com
Geomagnetic storms are extreme space weather events, which have considerable impacts
on the ionosphere and power transmission systems. In this paper, the ionospheric …

Ionospheric-Thermospheric responses to the May and September 2017 geomagnetic storms over Asian regions

MA Tariq, Y Yuyan, M Shah, MA Shah, T Iqbal… - Advances in Space …, 2022 - Elsevier
This paper presents the longitudinal dependence of ionospheric responses from Global
Navigation Satellite System (GNSS) derived Total Electron Content (TEC) during two intense …

Interhemispheric Asymmetries in Ionospheric Electron Density Responses During Geomagnetic Storms: A Study Using Space‐Based and Ground‐Based GNSS and …

N Swarnalingam, DL Wu… - Journal of Geophysical …, 2022 - Wiley Online Library
Abstract We utilize Total Electron Content (TEC) measurements and electron density (Ne)
retrieval profiles from Global Navigation Satellite System (GNSS) receivers onboard multiple …

Study of the equatorial and low‐latitude electrodynamic and ionospheric disturbances during the 22–23 June 2015 geomagnetic storm using ground‐based and …

E Astafyeva, I Zakharenkova, K Hozumi… - Journal of …, 2018 - Wiley Online Library
We use a set of ground‐based instruments (Global Positioning System receivers,
ionosondes, magnetometers) along with data of multiple satellite missions (Swarm, C/NOFS …

Variation on solar wind parameters and total electron content over middle‐to low‐latitude regions during intense geomagnetic storms

RK Mishra, B Adhikari, NP Chapagain, R Baral… - Radio …, 2020 - Wiley Online Library
Streams of the particle ejected from the Sun and the extreme space weather conditions like
storms, high‐speed streamers (HSSs), interplanetary coronal mass ejections (ICMEs) …

Temporal and spatial variations of total electron content enhancements during a geomagnetic storm on 27 and 28 September 2017

A Shinbori, Y Otsuka, T Sori, T Tsugawa… - Journal of …, 2020 - Wiley Online Library
Temporal and spatial evolutions of total electron content (TEC) and electron density in the
ionosphere during a geomagnetic storm that occurred on 27 and 28 September 2017 have …

Ionospheric–thermospheric responses in south America to the august 2018 geomagnetic storm based on multiple observations

M Shah, A Abbas, M Ehsan, AC Aiber… - IEEE Journal of …, 2021 - ieeexplore.ieee.org
The ionospheric storm time responses during August 2018 are investigated over South
American region using multiple observables, for example, Global Navigation Satellite …

[HTML][HTML] Ionospheric response to a geomagnetic storm during November 8–10, 2004

KG Simi, G Manju, MKM Haridas, SRP Nayar… - Earth, Planets and …, 2013 - Springer
This paper investigates the response of the equatorial, and near equatorial, ionosphere to
geomagnetic disturbances during the period November 8–10, 2004. Ionosonde data from …