In use
Published works where FMC has been used
Adii, J., Kusumawati, D., Falevi, C., & Sahara, D. P. (2021). Maluku Sea Plate Faulting Regime Analysis: A Preliminary Study. IOP Conference Series: Earth and Environmental Science, 873(1), 012100. https://doi.org/10.1088/1755-1315/873/1/012100
Alonso-Henar, J., Álvarez-Gómez, J. A., & Martínez-Díaz, J. J. (2017). Neogene-quaternary evolution from transpressional to transtensional tectonics in Northern Central America controlled by cocos: Caribbean subduction coupling change. Journal of Iberian Geology, 43(3), 519–538.
Alonso-Henar, J., Fernández, C., Álvarez-Gómez, J. A., Canora, C., Staller, A., Díaz, M., Hernández, W., García, Á. V., & Martínez-Díaz, J. J. (2022). Active Triclinic Transtension in a Volcanic Arc: A Case of the El Salvador Fault Zone in Central America. Geosciences, 12(7), Article 7. https://doi.org/10.3390/geosciences12070266
Álvarez-Gómez, J. A., Aniel-Quiroga, Í., González, M., Olabarrieta, M., & Carreño, E. (2011). Scenarios for earthquake-generated tsunamis on a complex tectonic area of diffuse deformation and low velocity: The Alboran Sea, Western Mediterranean. Marine Geology, 284(1–4), 55–73. https://doi.org/16/j.margeo.2011.03.008
Álvarez-Gómez, J. A., Gutiérrez Gutiérrez, O. Q., Aniel-Quiroga, Í., & González, M. (2012). Tsunamigenic potential of outer-rise normal faults at the Middle America trench in Central America. Tectonophysics, 574–575, 133–143.
Álvarez-Gómez, J. A., Martin, R., Pérez-López, R., Stich, D., Cantavella, J. V., Martínez-Díaz, J. J., Morales Soto, J., Martínez-García, P., Soto, J. I., & Carreño, E. (2016). La serie sísmica de Alhucemas 2016. Partición de la deformación e interacción de estructuras en un límite de placas difuso. Geo-Temas, 16(2), 491–494.
Ammirati, J.-B., Azúa, K., Pastén-Araya, F., Richter, A., Wiens, D. A., Flores, M. C., Ruiz, S., Guzmán-Marín, P., Lanza, F., & Sielfeld, G. (2024). Fault reactivation linked to rapid ice-mass removal from the Southern Patagonian Icefield (48–52°S). Tectonophysics, 880, 230320. https://doi.org/10.1016/j.tecto.2024.230320
Arteta, C. A., Pajaro, C. A., Mercado, V., Montejo, J., Arcila, M., & Abrahamson, N. A. (2021). Ground-motion model for subduction earthquakes in northern South America. Earthquake Spectra, 87552930211027585.
Arteta, C. A., Pajaro, C. A., Mercado, V., Montejo, J., Arcila, M., & Abrahamson, N. A. (2023). Ground‐Motion Model (GMM) for Crustal Earthquakes in Northern South America (NoSAm Crustal GMM). Bulletin of the Seismological Society of America, 113(1), 186–203. https://doi.org/10.1785/0120220168
Assie, K. R., Wang, Y., Ma, H., Kouamelan, K. S., Brantson, E. T., N’dri, K. A., & Mondah, O. R. (2020). Late Cenozoic paleostress reconstruction and stress regimes in Taiyuan basin of the Shanxi rift, North China. International Journal of Earth Sciences, 110(1), 287–303. https://doi.org/10.1007/s00531-020-01952-3
Bălă, A., Radulian, M., Popescu, E., & Toma-Danilă, D. (2018). Catalogue of Earthquake Mechanism and Correlation with the Most Active Seismic Zones in South-Eastern Part of Romania. In Seismic Hazard and Risk Assessment (pp. 23–37). Springer, Cham. https://doi.org/10.1007/978-3-319-74724-8
Bala, A., Radulian, M., & Toma-Danila, D. (2021). Present-day stress field pattern in the Vrancea seismic zone (Romania) deduced from earthquake focal mechanism inversion. Annals of Geophysics, 64(6), PE660–PE660.
Bala, A., Toma-Danila, D., & Radulian, M. (2019). Focal mechanisms in Romania: Statistical features representative for earthquake-prone areas and spatial correlations with tectonic provinces. Acta Geodaetica et Geophysica, 54(2), 263–286. https://doi.org/10.1007/s40328-019-00260-w
Beaucé, E., van der Hilst, R. D., & Campillo, M. (2022). An Iterative Linear Method with Variable Shear Stress Magnitudes for Estimating the Stress Tensor from Earthquake Focal Mechanism Data: Method and Examples. Bulletin of the Seismological Society of America, 112(3), 1224–1239. https://doi.org/10.1785/0120210319
Bonatis, P., Karakostas, V. G., Papadimitriou, E. E., & Kaviris, G. (2022). Investigation of the Factors Controlling the Duration and Productivity of Aftershocks Following Strong Earthquakes in Greece. Geosciences, 12(9), Article 9. https://doi.org/10.3390/geosciences12090328
Chang, E. T., & Mozziconacci, L. (2022). Outer trench slope extension to frontal wedge compression in a subducting plate. Earth, Planets and Space, 74(1), 102. https://doi.org/10.1186/s40623-022-01664-9
Ciaccio, M. G., Di Stefano, R., Improta, L., Mariucci, M. T., Castello, B., Latorre, D., Margheriti, L., Baccheschi, P., Lisi, A., & Marchetti, A. (2021). First-Motion Focal Mechanism Solutions for 2015–2019 M≥ 4.0 Italian Earthquakes. Frontiers in Earth Science, 9, 173.
Craiu, A., Ghita, C., Craiu, M., Diaconescu, M., Mihai, M., & Ardeleanu, L. (2018). The source mechanism of the seismic events during the sequence of the moderate-size crustal earthquake of November 22, 2014 of Vrancea region (Romania). Annals of Geophysics, 61(6), SE666–SE666.
Custódio, S., Lima, V., Vales, D., Cesca, S., & Carrilho, F. (2016). Imaging active faulting in a region of distributed deformation from the joint clustering of focal mechanisms and hypocentres: Application to the Azores–western Mediterranean region. Tectonophysics, 676, 70–89.
Czirok, L., Kuslits, L., Bozsó, I., Radulian, M., & Gribovszki, K. (2022). Cluster Analysis for the Study of Stress Patterns in the Vrancea-Zone (SE-Carpathians). Pure and Applied Geophysics, 179(10), 3693–3712. https://doi.org/10.1007/s00024-022-03159-w
Dalaison, M., Jolivet, R., & Le Pourhiet, L. (2023). A snapshot of the long-term evolution of a distributed tectonic plate boundary. Science Advances, 9(16), eadd7235. https://doi.org/10.1126/sciadv.add7235
Dias, N. A., Téllez, J., & Matias, L. (2020). Insight on the Crustal Stress State in Faial and Pico Islands (Azores), from Analysis of Aftershocks of the 1998 Earthquake. Pure and Applied Geophysics, 177(11), 5169–5187. https://doi.org/10.1007/s00024-020-02558-1
Earnest, A., Sunilkumar, T. C., & Silpa, K. (2021). Sinking Slab Stress and Seismo-Tectonics of the Indo-Burmese Arc: A Reappraisal. Tectonics, 40(8), e2021TC006827. https://doi.org/10.1029/2021TC006827
Esat, K., Seyitoğlu, G., Aktuğ, B., Kaypak, B., & Ecevitoğlu, B. (2021). The Northwest Central Anatolian Contractional Area: A neotectonic deformation zone bounded by major strike-slip fault zones in the Anatolian Plate. Tectonophysics, 805, 228776.
Fontiela, J., Sousa Oliveira, C., & Rosset, P. (2018). Characterisation of seismicity of the azores archipelago: An overview of historical events and a detailed analysis for the period 2000–2012. Volcanoes of the Azores, 127–153.
García-Delgado, H., Velandia, F., Bermúdez, M. A., & Audemard, F. (2022). The present-day tectonic regimes of the Colombian Andes and the role of slab geometry in intraplate seismicity. International Journal of Earth Sciences, 111(7), 2081–2099. https://doi.org/10.1007/s00531-022-02227-9
Giner-Robles, J. L., Pérez-López, R., Elez, J., Silva, P., Roquero, E., Ramos, A., Canora, C., Rodríguez-Escudero, E., & Rodríguez-Pascua, M. Á. (2021a). Análisis 3D de la deformación y cinemática de la Fosa Mesoamericana en la confluencia entre las placas de Rivera y Cocos con las placas Caribe y Norteamericana. Boletín de La Sociedad Geológica Mexicana, 73(2).
Giner-Robles, J. L., Pérez-López, R., Elez, J., Silva, P., Roquero, E., Ramos, A., Canora, C., Rodríguez-Escudero, E., & Rodríguez-Pascua, M. Á. (2021b). Strain 3D analysis and kinematics of the Middle American Trench in the junction of the Rivera and Cocos plates with the North-American and Caribbean plates. Boletín de La Sociedad Geológica Mexicana, 73(2). https://doi.org/10.18268/bsgm2021v73n2a150121
Godefroy, G., Caumon, G., Laurent, G., & Bonneau, F. (2021). Multi-scenario interpretations from sparse fault evidence using graph theory and geological rules. Journal of Geophysical Research: Solid Earth, 126(2), e2020JB020022.
Grimm, C., Rupprecht, T., Johnson, K., Hainzl, S., Küchenhoff, H., Käser, M., & Pagani, M. (2022). New Statistical Perspectives on Bath’s Law and Aftershock. https://doi.org/10.21203/rs.3.rs-1661764/v1
Güvercin, S. E., Karabulut, H., Konca, A. Ö., Doğan, U., & Ergintav, S. (2022). Active Seismotectonics of the East Anatolian Fault. Geophysical Journal International, ggac045. https://doi.org/10.1093/gji/ggac045
Herrera, C., Cassidy, J. F., Dosso, S. E., Dettmer, J., Bloch, W., Sippl, C., & Salazar, P. (2021). The Crustal Stress Field Inferred From Focal Mechanisms in Northern Chile. Geophysical Research Letters, 48(8), e2021GL092889. https://doi.org/10.1029/2021GL092889
Hutchinson, J., Kao, H., Riedel, M., Obana, K., Wang, K., Kodaira, S., Takahashi, T., & Yamamoto, Y. (2023). Tectonic evolution of the Nootka fault zone and deformation of the shallow subducted Explorer plate in northern Cascadia as revealed by earthquake distributions and seismic tomography. Scientific Reports, 13(1), 7873. https://doi.org/10.1038/s41598-023-33310-z
Illsley‐Kemp, F., Keir, D., Bull, J. M., Gernon, T. M., Ebinger, C., Ayele, A., Hammond, J. O. S., Kendall, J.-M., Goitom, B., & Belachew, M. (2018). Seismicity During Continental Breakup in the Red Sea Rift of Northern Afar. Journal of Geophysical Research: Solid Earth, 123(3), 2345–2362. https://doi.org/10.1002/2017JB014902
Jansen, G. (2018). Modeling heat and fluid flow in discrete fracture networks: Application to fluid-driven seismicity and engineered geothermal systems [PhD Thesis]. Université de Neuchâtel.
Jansen, G., Ruhl, C. J., & Miller, S. A. (2019). Fluid Pressure-Triggered Foreshock Sequence of the 2008 Mogul Earthquake Sequence: Insights From Stress Inversion and Numerical Modeling. Journal of Geophysical Research: Solid Earth, 124(4), 3744–3765. https://doi.org/10.1029/2018JB015897
Kamra, C., Chopra, S., Yadav, R. B. S., & Joshi, V. (2020). Characterization of Major Fault Systems in the Kachchh Intraplate Region, Gujarat, India, by Focal Mechanism and Source Parameters. Seismological Research Letters, 91(6), 3496–3517. https://doi.org/10.1785/0220200005
Kassaras, I., Kapetanidis, V., Ganas, A., Karakonstantis, A., Papadimitriou, P., Kaviris, G., Kouskouna, V., & Voulgaris, N. (2022). Seismotectonic analysis of the 2021 Damasi-Tyrnavos (Thessaly, Central Greece) earthquake sequence and implications on the stress field rotations. Journal of Geodynamics, 150, 101898. https://doi.org/10.1016/j.jog.2022.101898
Khalil, A. R., & Al-Arifi, N. S. (2018). Focal mechanisms overview. Earth Science Informatics. https://doi.org/10.1007/s12145-018-0367-1
Kim, N., Park, S.-I., Cho, C. S., Cheon, Y., & Peace, A. L. (2023). Neotectonic transpressional intraplate deformation in eastern Eurasia: Insights from active fault systems in the southeastern Korean Peninsula. Geoscience Frontiers, 14(4), 101559. https://doi.org/10.1016/j.gsf.2023.101559
Koike, M., & Nakamichi, H. (2021). Dike inflation process beneath Sakurajima volcano, Japan, during the earthquake swarm of August 15, 2015. Frontiers in Earth Science, 8, 743.
Kossobokov, V. G., Nekrasova, A. K., & Schepalina, P. D. (2022). Seismic Dynamics in Advance of and After the Largest Earthquakes, 1985–2020. Surveys in Geophysics, 43(2), 423–436. https://doi.org/10.1007/s10712-021-09674-0
Kusumawati, D., Sahara, D. P., Puspito, N. T., Daryono, M. R., Nugraha, A. D., Sadly, M., Prayitno, B. S., Daryono, D., Heryandoko, N., & Rohadi, S. (2024). A new moment tensor catalogue of light to moderate earthquakes in Palu-Koro and Matano faults, Sulawesi, based on the regional network in Indonesia: Fault analysis and insight. Physics of the Earth and Planetary Interiors, 107209. https://doi.org/10.1016/j.pepi.2024.107209
Li, S., Fang, L., Xiao, Z., Zhou, Y., Liao, S., & Fan, L. (2023). FocMech-Flow: Automatic Determination of P-Wave First-Motion Polarity and Focal Mechanism Inversion and Application to the 2021 Yangbi Earthquake Sequence. Applied Sciences, 13(4), Article 4. https://doi.org/10.3390/app13042233
Lindner, M., Rietbrock, A., Bie, L., Goes, S., Collier, J., Rychert, C., Harmon, N., Hicks, S. P., Henstock, T., & the VoiLA working group. (2023). Bayesian regional moment tensor from ocean bottom seismograms recorded in the Lesser Antilles: Implications for regional stress field. Geophysical Journal International, 233(2), 1036–1054. https://doi.org/10.1093/gji/ggac494
Liu, C., Liu, F., Cai, Y., Ni, R., Xu, X., Li, G., Hao, W., & Tian, Z. (2023). The present-day stress field along the Northwest Pacific Wadati-Benioff zone constrained by focal mechanisms of moderate earthquakes. Frontiers in Earth Science, 10. https://doi.org/10.3389/feart.2022.1017632
Martínez-Díaz, J. J., Álvarez-Gómez, J. A., Staller, A., Alonso-Henar, J., Canora, C., Insúa-Arévalo, J. M., Tsige, M., Villamor, P., Herrero-Barbero, P., Hernández-Moreno, C., Hernández, W., Hernández, D., Marroquín, G., & Mixco, L. (2021). Active faults of El Salvador. Journal of South American Earth Sciences, 105, 103038. https://doi.org/10.1016/j.jsames.2020.103038
Montenegro, V. M., Spagnotto, S., Legrand, D., & Caselli, A. T. (2021). Seismic evidence of the active regional tectonic faults and the Copahue volcano, at Caviahue Caldera, Argentina. Bulletin of Volcanology, 83(4), 1–16.
Monterrubio-Velasco, M., Carrasco-Jimenez, J. C., Rojas, O., Rodríguez, J. E., Fichtner, A., & Puente, J. D. la. (2022). A Statistical Approach Towards Fast Estimates of Moderate-To-Large Earthquake Focal Mechanisms. Frontiers in Earth Science, 10. https://doi.org/10.3389/feart.2022.743860
Newton, T. J., & Thomas, A. M. (2020). Stress Orientations in the Nankai Trough Constrained Using Seismic and Aseismic Slip. Journal of Geophysical Research: Solid Earth, 125(7), e2020JB019841. https://doi.org/10.1029/2020JB019841
Pan, Z., He, J., & Li, J. (2018). Contemporary Crustal Deformation Within the Pamir Plateau Constrained by Geodetic Observations and Focal Mechanism Solutions. Pure and Applied Geophysics, 175(10), 3463–3484. https://doi.org/10.1007/s00024-018-1872-3
Pan, Z., He, J., & Shao, Z. (2020). Spatial variation in the present-day stress field and tectonic regime of Northeast Tibet from moment tensor solutions of local earthquake data. Geophysical Journal International, 221(1), 478–491. https://doi.org/10.1093/gji/ggaa013
Papadimitriou, E., Karakostas, V., Papazachos, C., Foumelis, M., Kiratzi, A., Pikridas, C., Bonatis, P., Kostoglou, A., Kourouklas, C., Scordilis, E., Bitharis, S., Paradisopoulou, P., Panou, A., Galanis, O., Karagianni, E., Vamvakaris, D., Karagianni, I., Kkallas, C., Chatzis, N., … Hatzidimitriou, P. (2023). The seismogenic structure of March 2021 Tyrnavos (central Greece) doublet (Mw 6.3 and Mw 6.0), constrained by aftershock locations and geodetic data. Geophysical Journal International, 235(1), 644–689. https://doi.org/10.1093/gji/ggad253
Patricelli, G., Poli, M. E., & Cheloni, D. (2022). Structural Complexity and Seismogenesis: The Role of the Transpressive Structures in the 1976 Friuli Earthquakes (Eastern Southern Alps, NE Italy). Geosciences, 12(6), Article 6. https://doi.org/10.3390/geosciences12060227
Pérez-Estay, N., Ruz-Ginouves, J., Pérez-Flores, P., Sielfeld, G., Roquer, T., & Cembrano, J. (2023). Decoding the state of stress and fluid pathways along the Andean Southern Volcanic Zone. Communications Earth & Environment, 4(1), 1–15. https://doi.org/10.1038/s43247-023-01040-9
Pérez‐Estay, N., Yáñez, G., Crempien, J., Roquer, T., Cembrano, J., Valdenegro, P., Aravena, D., Arancibia, G., & Morata, D. (2020). Seismicity in a Transpressional Volcanic Arc: The Liquiñe-Ofqui Fault System in the Puyuhuapi Area, Southern Andes, Chile (44°S). Tectonics, 39(11), e2020TC006391. https://doi.org/10.1029/2020TC006391
Pérez-López, R., Mediato, J. F., Rodríguez-Pascua, M. A., Giner-Robles, J. L., Ramos, A., Martín-Velázquez, S., Martínez-Orío, R., & Fernández-Canteli, P. (2020). An active tectonic field for CO 2 storage management: The Hontomín onshore case study (Spain). Solid Earth, 11(2), 719–739.
Pérez-López, R., Ramos, A., & Giner-Robles, J. L. (2022). Stress and strain analysis and induced seismicity in geological gas storage (Yela, Spain). Journal of Structural Geology, 161, 104662. https://doi.org/10.1016/j.jsg.2022.104662
Pesicek, J. D., Ogburn, S. E., & Prejean, S. G. (2021). Indicators of volcanic eruptions revealed by global M4+ earthquakes. Journal of Geophysical Research: Solid Earth, 126(3), e2020JB021294.
Petrescu, L., Borleanu, F., Radulian, M., Ismail-Zadeh, A., & Maţenco, L. (2021). Tectonic regimes and stress patterns in the Vrancea Seismic Zone: Insights into intermediate-depth earthquake nests in locked collisional settings. Tectonophysics, 799, 228688. https://doi.org/10.1016/j.tecto.2020.228688
Petricca, P., Bignami, C., & Doglioni, C. (2021). The epicentral fingerprint of earthquakes marks the coseismically activated crustal volume. Earth-Science Reviews, 103667.
Poggi, V., Garcia-Peláez, J., Styron, R., Pagani, M., & Gee, R. (2020). A probabilistic seismic hazard model for North Africa. Bulletin of Earthquake Engineering, 18(7), 2917–2951.
Popescu, E., Radulian, M., Bala, A., & Toma-Danila, D. (2018). Earthquake mechanism in the Vrancea subcrustal source and in the adjacent crustal seismogenic zones of the south-eastern Romania. Romanian Reports in Physics, 704.
Quinones, L. (2018). Determining Principal Stress Orientations and Magnitudes in the Fort Worth Basin, Texas. Earth Sciences Theses and Dissertations. https://scholar.smu.edu/hum_sci_earthsciences_etds/3
Quinones, L. A., DeShon, H. R., Magnani, M. B., & Frohlich, C. (2018). Stress Orientations in the Fort Worth Basin, Texas, Determined from Earthquake Focal Mechanisms. Bulletin of the Seismological Society of America, 108(3A), 1124–1132. https://doi.org/10.1785/0120170337
Radulian, M., Bala, A., Popescu, E., Toma-Danila, D., & Toma-Danila, D. (2018). Earthquake mechanism and characterization of seismogenic zones in south-eastern part of Romania. Annals of Geophysics, 61(1), SE108. https://doi.org/10.4401/ag-7443
Rahman, A., Afnimar, Perdana, Y. H., & Vita, A. N. (2022). A Preliminary Result: Characteristic and Mechanism of Deep earthquake in Java subduction zone. Journal of Physics: Conference Series, 2243(1), 012026. https://doi.org/10.1088/1742-6596/2243/1/012026
Reiter, F., Freudenthaler, C., Hausmann, H., Ortner, H., Lenhardt, W., & Brandner, R. (2018). Active seismotectonic deformation in front of the Dolomites indenter, Eastern Alps. Tectonics, 37(12), 4625–4654.
Ren, Y., Lange, D., & Grevemeyer, I. (2023). Seismotectonics of the Blanco Transform Fault System, Northeast Pacific: Evidence for an Immature Plate Boundary. Journal of Geophysical Research: Solid Earth, 128(3), e2022JB026045. https://doi.org/10.1029/2022JB026045
Rodríguez-Pérez, Q., Monterrubio-Velasco, M., Zúñiga, F. R., Valdés-González, C. M., & Arámbula-Mendoza, R. (2021). Spatial and temporal b-value characterization at Popocatépetl volcano, Central Mexico. Journal of Volcanology and Geothermal Research, 107320.
Rodríguez-Pérez, Q., & Zúñiga, F. R. (2023). An earthquake focal mechanism catalog for source and tectonic studies in Mexico from February 1928 to July 2022. Earth System Science Data, 15(11), 4781–4801. https://doi.org/10.5194/essd-15-4781-2023
Rodríguez-Pérez, Q., & Zúñiga, F. R. (2024). Global seismic energy scaling relationships based on the type of faulting. Solid Earth, 15(2), 229–249. https://doi.org/10.5194/se-15-229-2024
Rodríguez-Pérez, Q., Zúñiga, F. R., & Valdés-González, C. M. (2022). Statistical earthquake characterization from relocated seismicity at Volcan de Fuego, Colima Western Mexico. Journal of Volcanology and Geothermal Research, 431, 107662. https://doi.org/10.1016/j.jvolgeores.2022.107662
Roselli, P., Improta, L., Kwiatek, G., Martínez-Garzón, P., Saccorotti, G., & Lombardi, A. M. (2023). Source mechanisms and induced seismicity in the Val d’Agri Basin (Italy). Geophysical Journal International, 234(3), 1617–1627. https://doi.org/10.1093/gji/ggad155
Rubinstein, J. L., Ellsworth, W. L., & Dougherty, S. L. (2018). The 2013–2016 Induced Earthquakes in Harper and Sumner Counties, Southern Kansas. Bulletin of the Seismological Society of America, 108(2), 674–689. https://doi.org/10.1785/0120170209
Safonov, D. A. (2022). The Earthquake of February 13, 2020, M = 7.0 and Seismotectonic Conditions at Intermediate Depths of the Southern Kuril Islands. Pure and Applied Geophysics, 179(11), 4147–4162. https://doi.org/10.1007/s00024-021-02926-5
Saraò, A., Sugan, M., Bressan, G., Renner, G., & Restivo, A. (2021). A focal mechanism catalogue of earthquakes that occurred in the southeastern Alps and surrounding areas from 1928–2019. Earth System Science Data, 13(5), 2245–2258. https://doi.org/10.5194/essd-2020-369
Schilirò, L., Rossi, M., Polpetta, F., Fiorucci, F., Fortunato, C., & Reichenbach, P. (2023). A web-based GIS (web-GIS) database of the scientific articles on earthquake-triggered landslides. Natural Hazards and Earth System Sciences, 23(5), 1789–1804. https://doi.org/10.5194/nhess-23-1789-2023
Shuck, B., Gulick, S. P. S., Van Avendonk, H. J. A., Gurnis, M., Sutherland, R., Stock, J., & Hightower, E. (2022). Stress transition from horizontal to vertical forces during subduction initiation. Nature Geoscience, 15(2), 149–155. https://doi.org/10.1038/s41561-021-00880-4
Smith, P., Bass, V., Christopher, T., Edgecombe, N., Hatter, S., Miller, V., Pascal, K., Stewart, R., & Syers, R. (2018). MVO Scientific Report for Volcanic Activity between 1 April and 30 September 2018.
Soares, A., Custódio, S., Cesca, S., Silva, R., Vuan, A., & Mendes, V. B. (2023). The February 2018 seismic swarm in São Miguel, Azores. Frontiers in Earth Science, 11. https://doi.org/10.3389/feart.2023.1144151
Staller, A., Álvarez-Gómez, J. A., Luna, M. P., Béjar-Pizarro, M., Gaspar-Escribano, J. M., & Martínez-Cuevas, S. (2018). Crustal motion and deformation in Ecuador from cGNSS time series. Journal of South American Earth Sciences, 86, 94–109. https://doi.org/10.1016/J.JSAMES.2018.05.014
Tateiwa, K. (2023). Relationships between seismicity and slow slip events at New Zealand’s northern and central Hikurangi subduction zone inferred from detailed spatiotemporal earthquake analysis [PhD Thesis, Tohoku University]. https://tohoku.repo.nii.ac.jp/record/2000259/files/230925-Tateiwa-3485-1.pdf
Torres, P., & Andrés, G. (2021). Structural modelling of the Soapaga Fault in the central part of the Eastern Cordillera, Colombia. https://doi.org/10.1306/13251334M943429
Vigide, N., Yagupsky, D., Barcelona, H., Agusto, M., & Caselli, A. (2023). Understanding the Caviahue-Copahue volcanic complex through kinematic solutions, paleotensors and analogue modelling. Journal of South American Earth Sciences, 121, 104136. https://doi.org/10.1016/j.jsames.2022.104136
von Specht, S., Heidbach, O., Cotton, F., & Zang, A. (2018). Uncertainty reduction of stress tensor inversion with data-driven catalogue selection. Geophysical Journal International, 214(3), 2250–2263. https://doi.org/10.1093/gji/ggy240