The Fine Structure of Coseismic Electromagnetic Response Based on Geomagnetic and Seismological Observations

Тонкая структура коксеизмического электромагнитного отклика на основе геомагнитных и сейсмологических наблюдений
S. V. Anisimov, Anatoly Soloviev, A. G. Goev, I. M. Aleshin, А. Н. Морозов, E. N. Solovieva
2024-10-01

Aegean Sea and eastern Turkey Mw ≥ 7.0 earthquakesP-wave and S-wave correlationcoseismic electromagnetic responsegeomagnetic-field variationssurface-wave-induced geomagnetic disturbance
This paper examines the response in geomagnetic-field variations caused by the 2020–2023 earthquakes with magnitudes Mw ≥ 7.0 in the Aegean Sea and eastern Turkey. A detailed comparison of high-precision observations of the geomagnetic field and seismograms recorded at complex geophysical observatories within a radius of 3000 km from the epicenters was carried out. The joint analysis involves averaged 1-s data on the rate of change of the magnetic field and records from broadband seismic stations. Their characteristics are assessed in both in time and frequency domains. The spectral characteristics of body and surface waves are separately compared with those of the geomagnetic signal. It is shown that the beginning of disturbance in the magnetic field at each observatory strictly coincides with the arrival of the P-wave and intensifies with the arrival of S-waves. The maximum geomagnetic disturbance is caused by surface waves. The amplitude of electromagnetic excitations is proportional to the amplitude of the parent seismic phases. Thus, the coseismic nature of the observed electromagnetic signal has been confirmed, suggesting its excitation in the Earth’s crust as seismic waves propagate.
1
Amplitude of electromagnetic excitations is proportional to the amplitude of the corresponding seismic phases, confirming a coseismic origin excited within the Earth's crust.
2
Disturbance onset in the magnetic field at each observatory strictly coincides with the arrival of the seismic P-wave and intensifies with S-wave arrival.
3
High-precision geomagnetic and broadband seismic observations for Mw ≥ 7.0 earthquakes (2020–2023) in the Aegean Sea and eastern Turkey were jointly analyzed within 3000 km of epicenters.
4
Maximum geomagnetic disturbance is produced by surface seismic waves, exceeding effects from body waves.
5
Spectral characteristics of body and surface seismic waves were separately compared to geomagnetic signals, showing the geomagnetic signal spectral content matches that of seismic phases.

Coseismic variations of the geomagnetic field observed at geophysical observatories within ~3000 km of Mw≥7.0 Aegean Sea and eastern Turkey earthquakes (2020–2023)

Temporal and spectral relationship between seismic phases (P, S, surface waves) and the fine-structure electromagnetic response: timing, amplitude proportionality, and spectral correspondence indicating excitation in the Earth's crust

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2024-10-01
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S. V. Anisimov
Anatoly Soloviev
A. G. Goev
I. M. Aleshin
А. Н. Морозов
E. N. Solovieva
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