Fifty Years Later: Revisiting Viking 2 Seismic Signals Through InSight

Abstract For nearly 50 years, the origin of the candidate seismic signals recorded by Viking 2 remained unresolved because of limited instrumental sensitivity, onboard observation, data compression, and the absence of Martian seismic context. Here we reconstruct the Viking seismic workflow and reinterpret the two Viking candidate events, recorded on sol 53 and sol 80, using the seismic context established by InSight. We show that the Viking seismometer was optimized for high‐spectral‐frequency seismic signals, consequently reducing its sensitivity to low‐spectral‐frequency events. If the original 10‐s S‐P travel‐time difference is correct, the inferred location of the sol 80 event overlaps the broad northern‐plains source region suggested for the seasonally recurrent high‐spectral‐frequency and 2.4‐Hz marsquake populations observed by InSight. Alternatively, if the first‐arrival phase represents a crustal conversion phase rather than a direct P wave, the sol 80 event corresponds to a distant tectonic (low‐spectral‐frequency or broadband) marsquake with an estimated moment magnitude of M W 4.6–4.8 or M W 4.9–5.1. A meteorite impact origin cannot be excluded either. The two Viking seismic signals decay more rapidly than typical InSight marsquakes, suggesting heterogeneity in the Martian attenuation structure. Together, these findings integrate Viking observations into the modern framework of Martian seismicity, illustrating how a legacy planetary data set can acquire renewed scientific implications when re‐examined in light of subsequent mission data.

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Publication Details

Journal
AGU Advances
Published
2026-09-30
DOI
https://doi.org/10.1029/2026av002319
Primary Topic
Planetary Science and Exploration
Type
article
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article

Fifty Years Later: Revisiting Viking 2 Seismic Signals Through InSight

Wanbo Xiao, Yanbin Wang, Andrew R. Lazarewicz, Jiaqi Li
AGU Advances
Planetary Science and Exploration
article

Fifty Years Later: Revisiting Viking 2 Seismic Signals Through InSight

Wanbo Xiao, Yanbin Wang, Andrew R. Lazarewicz, Jiaqi Li
article en

Abstract

Abstract For nearly 50 years, the origin of the candidate seismic signals recorded by Viking 2 remained unresolved because of limited instrumental sensitivity, onboard observation, data compression, and the absence of Martian seismic context. Here we reconstruct the Viking seismic workflow and reinterpret the two Viking candidate events, recorded on sol 53 and sol 80, using the seismic context established by InSight. We show that the Viking seismometer was optimized for high‐spectral‐frequency seismic signals, consequently reducing its sensitivity to low‐spectral‐frequency events. If the original 10‐s S‐P travel‐time difference is correct, the inferred location of the sol 80 event overlaps the broad northern‐plains source region suggested for the seasonally recurrent high‐spectral‐frequency and 2.4‐Hz marsquake populations observed by InSight. Alternatively, if the first‐arrival phase represents a crustal conversion phase rather than a direct P wave, the sol 80 event corresponds to a distant tectonic (low‐spectral‐frequency or broadband) marsquake with an estimated moment magnitude of M W 4.6–4.8 or M W 4.9–5.1. A meteorite impact origin cannot be excluded either. The two Viking seismic signals decay more rapidly than typical InSight marsquakes, suggesting heterogeneity in the Martian attenuation structure. Together, these findings integrate Viking observations into the modern framework of Martian seismicity, illustrating how a legacy planetary data set can acquire renewed scientific implications when re‐examined in light of subsequent mission data.

AGU AdvancesVol. 7(7)
Peking University (CN), Institute of Seismology (KZ), State Key Laboratory of Earthquake Dynamics
Openalex Percentile: Top 11%
Planetary Science and Exploration
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Fifty Years Later: Revisiting Viking 2 Seismic Signals Through InSight — Wanbo Xiao, Yanbin Wang, et al. · AGU Advances (2026) | TGRS Research Map | TGRS