Pre-Earthquake Oscillating and Accelerating Patterns in the Lithosphere–Atmosphere–Ionosphere Coupling (LAIC) before the 2022 Luding (China) Ms6.8 Earthquake

Author:

Zhang Xuemin1ORCID,De Santis Angelo2ORCID,Liu Jing1,Campuzano Saioa A.23,Yang Na1,Cianchini Gianfranco2,Ouyang Xinyan1ORCID,D’Arcangelo Serena2ORCID,Yang Muping4,De Caro Mariagrazia2ORCID,Li Xinyan5,Fidani Cristiano2ORCID,Liu Hong1ORCID,Orlando Martina26ORCID,Nie Lei1ORCID,Perrone Loredana2ORCID,Piscini Alessandro2,Dong Lei1ORCID,Sabbagh Dario2ORCID,Soldani Maurizio2ORCID,Xiong Pan1ORCID

Affiliation:

1. Institute of Earthquake Forecasting, China Earthquake Administration, Beijing 100036, China

2. Istituto Nazionale di Geofisica e Vulcanologia (INGV), 00143 Rome, Italy

3. Department of Physics of the Earth and Astrophysics, Universidad Complutense de Madrid (UCM), 28040 Madrid, Spain

4. Liaoning Earthquake Agency, Shenyang 110031, China

5. Earthquake Agency of Ningxia Hui Autonomous Region, Yinchuan 750001, China

6. Dipartimento di Scienze, Università Roma TRE, 00154 Rome, Italy

Abstract

The coupling processes among the lithosphere, atmosphere, and ionosphere (LAI) during the earthquake preparation phase are still an open scientific debate. Comprehensive LAI coupling effects around the 2022 Ms6.8 Luding earthquake in China are investigated with a multi-parameter and multi-layer approach, including the b-value, revised accelerated moment release, Earth resistivity, ELF magnetic field emissions, atmospheric electric field, surface temperature, foF2 from ionosonde, GNSS TEC, Ne and magnetic field from CSES and Swarm satellites, and energetic electrons from CSES and NOAA satellites. It is found that the anomalies start from the lithospheric parameters as Earth resistivity and b-values 1–2 years before to reflect the local stress loading in the seismic region, then the ionospheric and atmospheric disturbances occur and accelerate −50 days before and −15 days before, and finally the electrons precipitate a few days before. The simultaneous perturbations in LAI illustrate the thermodynamic coupling channel, such as on 24 August, −12 days before. Meanwhile, the abundant developed ionospheric anomalies without atmospheric disturbances demonstrate the electromagnetic coupling way from the lithosphere to the ionosphere directly. Finally, the results demonstrate a two-way model of LAIC: one way is characterized by a slow chain of processes, of thermodynamic nature, starting from the ground and proceeding to the above atmosphere and ionosphere, showing an exponential trend in the cumulative number of anomalies; the second way is characterized by oscillating electromagnetic coupling between the lithosphere and ionosphere, showing intermittent fluctuations in the corresponding cumulative number of anomalies.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference60 articles.

1. Electromagnetic phenomena associated with earthquakes: A frontier in terrestrial electromagnetic noise environment;Hayakawa;Recent Res. Dev. Geophys.,2004

2. Lithosphere-Atmosphere-Ionosphere Coupling (LAIC) model: An unified concept for earthquake precursors validation;Pulinets;J. Asian Earth Sci.,2011

3. Ionosphere plasma bubbles and density variations induced by pre-earthquake rock currents and associated surface charges;Kuo;J. Geophys. Res. Space Phys.,2011

4. An improved coupling model for the lithosphere-atmosphere-ionosphere system;Kuo;J. Geophys. Res. Space Phys.,2014

5. An electric field penetration model for seismo-ionospheric research;Zhou;Adv. Space Res.,2017

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