20/03/2025
MISE A JOUR DES ETUDES SUR LE SEISME DU 8 SEPTEMBRE 2023 DANS LE HAUT ATLAS (nouvel article publié online le 20/6/2025) -
Timoulali, Y., Akoglu, A.M., Meghraoui, M. (2025). The 8 eptember 2023 High Atlas, Morocco earthquake: fault geometry and seismic image of the source zone. Bulletin of the Seismological Society of America, https://doi.org/10.1785/0120240211 [accès restreint] https://pubs.geoscienceworld.org/ssa/bssa/article-abstract/doi/10.1785/0120240211/657549/The-8-September-2023-High-Atlas-Morocco-Earthquake
Articles publiés à cette date dans des revues à lecteurs (par ordre alphabétique):
Bondár, I., Timoulali, Y., Chiang, A., Hni, L., & Kasmi, M. (2024) Relocation of the 8 September 2023 High Atlas, Morocco, Earthquake Aftershock Sequence. Bulletin of the Seismological Society of America, https://doi.org/10.1785/0120240100 [accès restreint]: https://pubs.geoscienceworld.org/ssa/bssa/article-abstract/doi/10.1785/0120240100/649774/Relocation-of-the-8-September-2023-High-Atlas
Carboni, F., Occhipinti, M., Lanari, R., Medina, F., Cherkaoui, T. E., Gaspari, R., Faccenna, C., Chiarabba, C. & Porreca, M. (2025). Strain partitioning and fault interaction during the 2023 Mw 6.8 Al-Haouz earthquake, Western High Atlas, Morocco. Journal of Structural Geology, 105394. open access: https://www.sciencedirect.com/science/article/pii/S0191814125000586
Cheloni, D., Famiglietti, N. A., Tolomei, C., Caputo, R., & Vicari, A. (2024). The 8 September 2023, MW 6.8, Morocco earthquake: A deep transpressive faulting along the active high Atlas mountain belt. Geophysical Research Letters, 51(2), e2023GL106992. [open access: https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2023GL106992
Dalal, P., Kundu, B., Sreejith, K. M., Senapati, B., Tiwari, D. K., Vissa, N. K., Jha, B. & Jin, S. (2024). Influence of Anthropogenic Groundwater Unloading in Haouz plain on the 8 September 2023, Mw 6.8, Al Haouz, Morocco Earthquake. Bulletin of the Seismological Society of America, https://doi.org/10.1785/0120240105 [accès restreint]: https://pubs.geoscienceworld.org/ssa/bssa/article-abstract/doi/10.1785/0120240105/650975/Influence-of-Anthropogenic-Groundwater-Unloading
Huang, K., Wei, G., Chen, K., Zhang, N., Li, M., & Dal Zilio, L. (2024). The 2023 Mw 6.8 Morocco Earthquake: A Lower Crust Event Triggered by Mantle Upwelling?. Geophysical Research Letters, 51(12), https://doi.org/10.1029/2024GL109052 . [open access]: https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2024GL109052
Levandowski, W. (2023). Fault‐Slip Potential near the Deadly 8 September 2023 M w 6.8 Al Haouz, Morocco, Earthquake. The Seismic Record, 3(4), 367-375. https://doi.org/10.1785/0320230037. [open access]: https://pubs.geoscienceworld.org/ssa/tsr/article/3/4/367/631695/Fault-Slip-Potential-near-the-Deadly-8-September
Malusà, M. G., Ellero, A., & Ottria, G. (2024). Tectonics of the Mw 6.8 Al Haouz earthquake (Morocco) reveals minor role of asthenospheric upwelling. Tectonophysics, 891, 230533. https://doi.org/10.1016/j.tecto.2024.230533 [open access: https://www.sciencedirect.com/science/article/pii/S0040195124003354
Nouayti, A., El Moudnib, L., Khattach, D., Zeckra, M., Nouayti, N., Saadi, O., Saadi, O., Elhairechi, K ., Oujane, B. & Iken, H. (2024). Seismic synthesis of the Al Haouz earthquake of September 8th, 2023 by integrating gravimetric and aeromagnetic data from the western High Atlas in Morocco. Modeling Earth Systems and Environment, vol. 10, 6639-6658 [accès restreint]: https://link.springer.com/article/10.1007/s40808-024-02148-3
[NEW] Qarbous, A., Timoulali, Y., Hoepffner, Ch., Chalouan, A., Ouzzaouit, L.A., Allaki, F.-Z. & Bargach, A. (2025). Update on the compressional tectonic evolution of the Tizi n’Test Fault Zone (Western High Atlas) and Its relation to the Al‐Haouz earthquake of 8 September 2023. Bulletin of the Seismological Society of America (2025). [accès restreint] https://doi.org/10.1785/0120240212
[New] Sadiq, B., Kozlova, A., Andreiev, A., Ibouh, H. & Mezzane, D. (2024). Analysis of the co-seismic displacement caused by the 2023 Mw 6.9 High Atlas Earthquake in the Ouarzazate Province, Morocco using DInSAR. International Conference of Young Professionals "GeoTerace-2024", 7-9 October 2024, Lviv, Ukraine. https://www.earthdoc.org/content/papers/10.3997/2214-4609.2024510015
Skikra, H., Fadil, A., Ouassanouan, Y., Lakhouidsi, K., Tahayt, A., Soulaimani, A., & El Moudnib, L. (2025). Seismotectonic assessment of the High Atlas orogen: Implications for the 8 September Mw 6.8 El-Haouz earthquake. Tectonophysics, 895, 230573. [accès restreint] : https://www.sciencedirect.com/science/article/abs/pii/S0040195124003755
Touati, B., Gu, W., Ni, S., Chu, R., Sheng, M., Xue, Q., Bellalem, F., Maouche, S. & Yahyaoui, H. (2024). The 2023 M w 6.8 Adassil Earthquake (Chichaoua, Morocco) on a steep reverse fault in the deep crust and its geodynamic implications. Earth and Planetary Physics, 8(3), 522-534. http://dx.doi.org/10.26464/epp2024019 [open access]: https://www.eppcgs.org/article/doi/10.26464/epp2024019
Wu, W., Zhang, Y., Hao, X., & Liu, J. (2024). The source kinematics and slip distribution of the 2023 Mw 6.8 Morocco earthquake. Journal of African Earth Sciences, 220, 105451. [open access]: https://www.sciencedirect.com/science/article/pii/S1464343X24002851
Yagi, Y., Okuwaki, R., Hirano, S., Enescu, B., Chikamori, M., & Yamaguchi, R. (2024). Barrier‐induced rupture front disturbances during the 2023 Morocco earthquake. Seismological Research Letters, 95(3), 1591-1598. [accès restreint]: https://pubs.geoscienceworld.org/ssa/srl/article-abstract/95/3/1591/633500/Barrier-Induced-Rupture-Front-Disturbances-during
Yeck, W. L., Hatem, A. E., Goldberg, D. E., Barnhart, W. D., Jobe, J. A. T., Shelly, D. R., Villasenor, A., Benz, H.M. & Earle, P. S. (2023). Rapid Source Characterization of the 2023 Mw 6.8 Al Haouz, Morocco, Earthquake. The Seismic Record, 3(4), 357-366. https://doi.org/10.1785/0320230040 [open access]: https://pubs.geoscienceworld.org/ssa/tsr/article/3/4/357/630536/Rapid-Source-Characterization-of-the-2023-Mw-6-8