Observation and characterization of traveling ionospheric disturbances induced by solar eclipse of 20 March 2015 using incoherent scatter radars and GPS networks

SV Panasenko, Y Otsuka, M van de Kamp… - Journal of Atmospheric …, 2019 - Elsevier
We present the results of a comprehensive study of traveling ionospheric disturbances
(TIDs) occurring over Europe during the total solar eclipse of 20 March 2015. For detection …

Statistical models of the variability of plasma in the topside ionosphere: 2. Performance assessment

L Spogli, Y Jin, J Urbář, AG Wood… - Journal of Space …, 2024 - swsc-journal.org
Statistical models of the variability of plasma in the topside ionosphere based on the Swarm
data have been developed in the “Swarm Variability of Ionospheric Plasma”(Swarm-VIP) …

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 …

Height dependency of solar eclipse effects: The ionospheric perspective

TGW Verhulst, SM Stankov - Journal of Geophysical Research …, 2020 - Wiley Online Library
A reliable interpretation of solar eclipse effects on the geospace environment, and on the
ionosphere in particular, necessitates a careful consideration of the so‐called eclipse …

Ionospheric behavior during the 10 June 2021 annular solar eclipse and its impact on GNSS precise point positioning

JC Valdés-Abreu, MA Díaz, M Bravo, JC Báez… - Remote Sensing, 2022 - mdpi.com
The main effects of the 10 June 2021 annular solar eclipse on GNSS position estimation
accuracy are presented. The analysis is based on TEC measurements made by 2337 GNSS …

First report of an eclipse from Chilean ionosonde observations: Comparison with total electron content estimations and the modeled maximum electron concentration …

M Bravo, M Martínez‐Ledesma… - Journal of …, 2020 - Wiley Online Library
The ionospheric responses to the total solar eclipse on 2 July 2019 over low latitudes in
southern South America are presented. Ionosonde observations were used within the totality …

[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 during the total solar eclipse over Southeast Asia‐Pacific on 9 March 2016: Part 1. Vertical movement of plasma layer and reduction in electron …

V Dear, A Husin, S Anggarani… - Journal of …, 2020 - Wiley Online Library
We report our investigation of ionospheric effects that occurred during a total solar eclipse
over the Southeast Asia‐Pacific region on 9 March 2016. In particular, here we examine …

Three‐dimensional and trans‐hemispheric changes in ionospheric electron density caused by the great solar eclipse in North America on 21 August 2017

L He, K Heki, L Wu - Geophysical Research Letters, 2018 - Wiley Online Library
We report the three‐dimensional (3‐D) structure of the electron depletion caused by the
great solar eclipse on 21 August 2017 derived from dense Global Navigation Satellite …

Variation of ionospheric plasma density during the annular solar eclipse on December 26, 2019

S Kundu, S Chowdhury, S Palit, SK Mondal… - Astrophysics and Space …, 2022 - Springer
The annular solar eclipse of the previous decade that occurred on December 26, 2019, was
mostly visible from most Asian countries, including India. In this manuscript, we present the …