Global positioning system observations of ionospheric total electron content variations during the 15th January 2010 and 21st June 2020 solar eclipse

A Silwal, SP Gautam, P Poudel, M Karki… - Radio …, 2021 - ieeexplore.ieee.org
The dual-frequency global positioning system (GPS) data acquired from the UNAVCO over
different places of Nepal were processed to examine the eclipse-triggered consequences on …

IonosphericTotal Electron Content Changes during the 15 February 2018 and 30 April 2022 Solar Eclipses over South America and Antarctica

JC Valdés-Abreu, M Díaz, M Bravo, Y Stable-Sánchez - Remote Sensing, 2023 - mdpi.com
This is one of the first papers to study the ionospheric effects of two solar eclipses that
occurred in South America and Antarctica under geomagnetic activity in different seasons …

Multi‐frequency SuperDARN HF radar observations of the ionospheric response to the October 2023 annular solar eclipse

EG Thomas, SG Shepherd, BSR Kunduri… - Geophysical …, 2024 - Wiley Online Library
An annular solar eclipse was visible on 14 October 2023 from 15: 00–21: 00 UT as its path
traveled across North, Central, and South America. In this letter, we present the first multi …

[HTML][HTML] Response of the mid-latitude ionosphere to the solar eclipse on 25 October 2022: Results of F2–layer vertical sounding

LY Emelyanov, OV Bogomaz, LF Chernogor… - Advances in Space …, 2024 - Elsevier
The results of observations of the critical frequency (fo F2), ionospheric F2 peak electron
density (N m F2) and peak height (hm F2) of the ionosphere over Kharkiv (Ukraine, 49.6° N …

Ionospheric effects of the June 10, 2021, solar eclipse in the Arctic

LF Chernogor, YB Mylovanov - Kinematics and Physics of Celestial Bodies, 2022 - Springer
Solar eclipses (SEs) cause a variety of processes in all geospheres. There is a decrease of
electron density, as well as electron, ion, and neutral temperature, in the ionosphere; the …

Effects from the June 10, 2021 solar eclipse in the high-latitude ionosphere: Results of GPS observations

L Chernogor, Y Mylovanov… - Radio Physics and Radio …, 2022 - ui.adsabs.harvard.edu
Abstract Subject and Purpose. The unique natural phenomena which solar eclipses are can
activate coupling between the subsystems of the Earth–atmosphere–ionosphere …

Thermospheric disturbances caused by the propagation of acoustic-gravity waves from the lower atmosphere during a solar eclipse

Y Kurdyaeva, O Borchevkina, I Karpov… - Advances in Space …, 2021 - Elsevier
The paper studies disturbances of the upper thermosphere caused by the vertical
propagation of acoustic-gravity waves (AGW) from the lower atmosphere during the solar …

Ionospheric effects of the August 11, 2018, solar eclipse over the People's Republic of China

LF Chernogor, YB Mylovanov - Kinematics and Physics of Celestial Bodies, 2020 - Springer
The purpose of the work is to describe ionospheric effects of the August 11, 2018, partial
solar eclipse (SE) that occurred over the People's Republic of China as observed via GPS …

Ionosphere over Eastern North Atlantic Midlatitudinal Zone during Geomagnetic Storms

T Barata, J Pereira, M Hernández-Pajares, T Barlyaeva… - Atmosphere, 2023 - mdpi.com
The ionospheric response at middle latitudes to geomagnetic storms is not yet very well
understood. Total electron content (TEC) variations associated with eight strong …

Occurrence and characteristics of medium‐scale traveling ionospheric disturbances observed by BeiDou GEO satellites over Hong Kong

X Le, X Ren, D Mei, H Liu… - Journal of Geophysical …, 2024 - Wiley Online Library
Medium‐scale traveling ionospheric disturbances (MSTIDs) can significantly alter a region's
ionosphere features, severely impacting the performance and stability of services such as …