EGU25-13661, updated on 15 Mar 2025
https://doi.org/10.5194/egusphere-egu25-13661
EGU General Assembly 2025
© Author(s) 2025. This work is distributed under
the Creative Commons Attribution 4.0 License.
Poster | Wednesday, 30 Apr, 14:00–15:45 (CEST), Display time Wednesday, 30 Apr, 14:00–18:00
 
Hall X3, X3.58
Swarm Investigation of Ultra-Low-Frequency (ULF) Pulsation and Plasma Irregularity Signatures Potentially Associated with Geophysical Activity
Georgios Balasis1, Angelo De Santis2, Constantinos Papadimitriou1, Adamantia Zoe Boutsi1, Gianfranco Cianchini2, Omiros Giannakis1, Stelios M. Potirakis3, and Mioara Mandea4
Georgios Balasis et al.
  • 1National Observatory of Athens, Institute for Astronomy, Astrophysics, Space Applications and Remote Sensing, Penteli, Greece (gbalasis@noa.gr)
  • 2Istituto Nazionale di Geofisica e Vulcanologia, Rome, Italy
  • 3Department of Electrical and Electronics Engineering, University of West Attica, Athens, Greece
  • 4Centre National d’Etudes Spatiales, Paris, France

Launched on 22 November 2013, Swarm is the fourth in a series of pioneering Earth Explorer missions and also the European Space Agency’s (ESA’s) first constellation to advance our understanding of the Earth’s magnetic field and the near-Earth electromagnetic environment. Swarm provides an ideal platform in the topside ionosphere for observing ultra-low-frequency (ULF) waves, as well as equatorial spread-F (ESF) events or plasma bubbles, and, thus, offers an excellent opportunity for space weather studies. For this purpose, a specialized time–frequency analysis (TFA) toolbox has been developed for deriving continuous pulsations (Pc), namely Pc1 (0.2–5 Hz) and Pc3 (22–100 mHz), as well as ionospheric plasma irregularity distribution maps. In this methodological paper, we focus on the ULF pulsation and ESF activity observed by Swarm satellites during a time interval centered around the occurrence of the 24 August 2016 Central Italy M6 earthquake. Due to the Swarm orbit’s proximity to the earthquake epicenter, i.e., a few hours before the earthquake occurred, data from the mission may offer a variety of interesting observations around the time of the earthquake event. These observations could be associated with the occurrence of this geophysical event. Most notably, we observed an electron density perturbation occurring 6 h prior to the earthquake. This perturbation was detected when the satellites were flying above Italy.

How to cite: Balasis, G., De Santis, A., Papadimitriou, C., Boutsi, A. Z., Cianchini, G., Giannakis, O., Potirakis, S. M., and Mandea, M.: Swarm Investigation of Ultra-Low-Frequency (ULF) Pulsation and Plasma Irregularity Signatures Potentially Associated with Geophysical Activity, EGU General Assembly 2025, Vienna, Austria, 27 Apr–2 May 2025, EGU25-13661, https://doi.org/10.5194/egusphere-egu25-13661, 2025.