Published April 2026 | Version Published
Journal Article Open

A Rate-and-State Friction Based Criterion for the Probability of Earthquake Fault Jumps

  • 1. Institut de Radioprotection et de sûreté Nucléaire, Fontenay‐aux‐Roses, France
  • 2. ROR icon GeoAzur
  • 3. ROR icon Institut des Sciences de la Terre de Paris
  • 4. ROR icon PSL Research University
  • 5. ROR icon Sapienza University of Rome
  • 6. ROR icon California Institute of Technology

Abstract

Geometrical complexities in natural fault zones, such as steps and gaps, pose a challenge in seismic hazard studies as they can act as obstacles to seismic ruptures. In this study, we propose a criterion, which is based on the rate‐and‐state equation, to estimate the efficiency of an earthquake rupture to jump between two spatially disconnected faults. The proposed jump criterion is tested using a 2D quasi‐dynamic numerical simulations of the seismic cycle. The criterion successfully predicts fault jumps where the simpler Coulomb stress change calculation fails to do so. The criterion includes the Coulomb stress change as a parameter but is also dependent on other important parameters among which is the absolute normal stress on the fault the rupture jumps to. Based on the criterion, the maximum jump distance increases with decreasing absolute normal stress, that is, as the rupture process occurs closer to the Earth's surface or as pore pressure increases. The criterion implies that earthquakes can jump to arbitrary large distances at the Earth's surface if the normal stress is allowed to go to zero, underscoring the potential for large jump distances (i.e., >5 km). We further propose a probabilistic framework to estimate the likelihood of rupture jumps by accounting for uncertainties in fault geometry and earthquake source parameters. Additionally to its role into seismic hazard assessment, this criterion could complement Coulomb stress change maps with those of triggered slip‐rates on receiver faults due to quasi‐instantaneous stress perturbations, as well as estimates of jump probabilities accounting for parameter uncertainties.

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Acknowledgement

This project has received funding from the Agence National de la Recherche (ANR EQ-TIME; Projet-ANR-19-CE31-0031). PR acknowledges support of the European Research Council (ERC) Starting Grant 101040600 (HYQUAKE). JC, HSB, NK, and MA acknowledge the European Research Council (ERC) for its partial support of this work through the PERSISMO Grant (No. 865411). A significative portion of the analyses reported in this paper were done using MATLAB (The MathWorks Inc., 2023). We thank the reviewers and editors for their insightful comments which helped improve the study substantially. Open access publication funding provided by COUPERIN CY26.

Supplemental Material

Supporting Information S1 (PDF)

Files

JGR Solid Earth - 2026 - Michel - A Rate‐and‐State Friction Based Criterion for the Probability of Earthquake Fault Jumps.pdf

Additional details

Related works

Is supplemented by
Dataset: 10.5281/zenodo.18503858 (DOI)

Funding

Agence Nationale de la Recherche
ANR-19-CE31-0031
European Research Council
101040600
European Research Council
865411

Dates

Submitted
2025-03-24
Accepted
2026-03-02
Available
2026-03-30
Version of record online

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