Ionospheric responses at low latitudes to the annular solar eclipse on 21 June 2020

F Huang, Q Li, X Shen, C Xiong, R Yan… - Journal of …, 2020 - Wiley Online Library
In this study, we utilized both ground‐based and space‐borne observations including total
electron content (TEC) from Beidou geostationary satellites, two‐dimensional TEC maps …

Prediction of the thermospheric and ionospheric responses to the 21 June 2020 annular solar eclipse

T Dang, JH Lei, WB Wang, MD Yan… - Earth and Planetary …, 2020 - Wiley Online Library
On 21 June 2020, an annular solar eclipse will traverse the low latitudes from Africa to
Southeast Asia. The highest latitude of the maximum eclipse obscuration is approximately …

Multi‐instrument and SAMI3‐TIDAS data assimilation analysis of three‐dimensional ionospheric electron density variations during the April 2024 total solar eclipse

E Aa, J Huba, SR Zhang, AJ Coster… - Journal of …, 2024 - Wiley Online Library
This paper conducts a multi‐instrument and data assimilation analysis of the three‐
dimensional ionospheric electron density responses to the total solar eclipse on 08 April …

Local and conjugate ionospheric total electron content variation during the 21 June 2020 solar eclipse

E Aa, SR Zhang, H Shen, S Liu, J Li - Advances in Space Research, 2021 - Elsevier
This paper studies the ionospheric response to a low-latitude annular solar eclipse event on
21 June 2020 at both eclipse and conjugate regions using a dense network of Global …

Multi‐instrument observations of the ionospheric response to the 26 December 2019 solar eclipse over Indian and Southeast Asian longitudes

RK Barad, S Sripathi, SL England - Journal of Geophysical …, 2022 - Wiley Online Library
Here, the impact of the 26 December 2019 solar eclipse on the equatorial and low latitude
ionosphere has been investigated using ground and space‐based observations over Indian …

3-D ionospheric electron density variations during the 2017 great American solar eclipse: A revisit

E Aa, SR Zhang, PJ Erickson, W Wang, AJ Coster - Atmosphere, 2023 - mdpi.com
This paper studies the three-dimensional (3-D) ionospheric electron density variation over
the continental US and adjacent regions during the August 2017 Great American Solar …

Coordinated ground‐based and space‐borne observations of ionospheric response to the annular solar eclipse on 26 December 2019

E Aa, SR Zhang, PJ Erickson… - Journal of …, 2020 - Wiley Online Library
This paper studies the ionosphere's response to the annular solar eclipse on 26 December
2019, utilizing the following ground‐based and space‐borne measurements: Global …

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 …

GITM‐data comparisons of the depletion and enhancement during the 2017 solar eclipse

C Wu, AJ Ridley, L Goncharenko… - Geophysical Research …, 2018 - Wiley Online Library
The total solar eclipse of 21 August 2017 was simulated with the Global Ionosphere‐
Thermosphere Model (GITM), and the results were compared with the total electron content …

Ionospheric TEC response to severe geomagnetic storm and annular solar eclipse through GNSS based TEC observations and assessment of IRI-2016 model and …

R Jenan, TL Dammalage, SK Panda - Astrophysics and Space Science, 2022 - Springer
The recent establishment of permanent Global Navigation Satellite System (GNSS)
monitoring stations across the Sri Lankan region prompts investigating the challenging …