Proceedings of the 12th International INQUA meeting on paleoseismology, active tectonic and archaeoseismology
R E F E R E N C E S Ammirati, J.-B., Villaseñor, A., Chevrot, S., Easton, G., Lehujeur, M., Ruiz, S., & Flores, M. C. (2022). Automated earthquake detection and local travel time tomography in the South-Central Andes (32– 35°S): Implications for regional tectonics. Journal of Geophysical Research: Solid Earth, 127 ,e2022JB024097.https:// doi.org/10.1029/2022JB0 24097 Brooks, Benjamin & Bevis, Michael & Whipple, Kelin & Arrowsmith, Ramon & Foster, James & Zapata, Tomás & Kendrick, Eric & Minaya, Estela & Echalar, Arturo & Blanco, M. & Euillades, Pablo & Sandoval, Mario & Jr, Robert. (2011). Orogenic-wedge deformation and potential for great earthquakes in the central Andean backarc. Nature Geoscience. 4. 380- 383. 10.1038/ngeo1143. Delouis B. (2014). FMNEAR: Determination of Focal Mechanism and First Estimate of Rupture Directivity Using Near‐Source Records and a Linear Distribution of Point Sources (2014). Bulletin of the Seismological Society of America 2014; 104 (3): 1479–1500. doi: https:// doi.or Eichelberger, N., & McQuarrie, N. (2015). Kinematic reconstruction of the Bolivian orocline. Geosphere, 11(2), 445-462.doi: https://doi.org/10.1130/GES01064.1 Funning, G. J., Barke, R. M., Lamb, S. H., Minaya, E., Parsons, B., & Wright, T. J. (2005). The 1998 Aiquile, Bolivia earthquake: A seismically active fault revealed with InSAR. Earth and Planetary Science Letters, 232(1-2), 39-49. Isacks, B. L. (1988), Uplift of the Central Andean Plateau and bending of the Bolivian Orocline, J. Geophys. Res., 93 (B4), 3211– 3231, doi:10.1029/JB093iB04p03211. Jarrin, P., Nocquet, J. M., Rolandone, F., Mora-Páez, H., Mothes, P., & Cisneros, D. (2023). Current motion and deformation of the Nazca Plate: new constraints from GPS measurements. Geophysical Journal International, 232(2), 842-863.\ Kissling, Edi & Kradolfer, Urs & Maurer, Hansrudi. (1995). Velest User's Guide. Int. Inst. Geophys. 1-26. Lee, W. H. K., & Lahr, J. C. (1972). HYPO71: A computer program for determining hypocenter, magnitude, and Grst motion pattern of local earthquakes (p. 100). US Department of the Interior, Geological Survey, National Center for Earthquake Research. Mercier, J. L., Sebrier, M., Lavenu, A., Cabrera, J., Bellier, O., Dumont, J. F., & Machrare, J. (1992). Changes in the tectonic regime above a subduction zone of Andean type: The Andes of Peru and Bolivia during the Pliocene‐Pleistocene. Journal of Geophysical Research: Solid Earth, 97(B8), 11945- 11982. Minaya, E. (2012). Mapa de amenaza sísmico volcánico para Bolivia” –programa de fortalecimiento para la capacidad de evaluación para la amenaza sismo– volcánico en Bolivia. McQuarrie, N. (2002). The kinematic history of the central Andean fold-thrust belt, Bolivia: Implications for building a high plateau. GSA Bulletin 2002; 114 (8): 950–963. doi: https://doi.org/10.1130/ 0016- 06(2002)114 <0950:TK- HOTC >2.0.CO; 2 Pardo-Casas F. and Molnar P. 1987. Relative motion of the Nazca (Farallon) and South American plates since Late Cretaceous time. Tectonics, 6: 233–248. Pujol, J. (2000). Joint Event Location — The JHD Technique and Applications to Data from Local Seismic Networks. Ryan, J., Beck, S., Zandt, G., Wagner, L., Minaya, E., & Tavera, H. (2016). Central Andean crustal structure from receiver function analysis. Tectonophysics, 682, 120-133. Venerdini, A., Alvarado, P., Ammirati, JB., Podesta, M., López, L., Fuentes, F., Linkimer, L. , Beck, S. (2020) Crustal seismicity in the Andean Precordillera of Argentina using seismic broadband data, Tectonophysics, Volume 786, 2020, 228450, ISSN 0040-1951, https://doi.org/10.1016/j. tecto.2020.228450. Weiss, J. R., et al. (2016), Isolating active orogenic wedge deformation in the southern Subandes of Bolivia, J. Geophys. Res. Solid Earth, 121, 6192– 6218, doi:10.1002/2016JB013145. Zhang, M., W.L. Ellsworth, and G.C. Beroza (2019). Rapid Earthquake Association and Location, Seismol. Res. Lett., 90.6, 2276-2284, 2019, https: // doi.org/10.1785/0220190052 Zhu Weiqiang , Beroza, Gregory C. (2019). PhaseNet: a deep-neural-network-based seismic arrival-time picking method, Geophysical Journal International, Volume 216, Issue 1, January 2019, Pages 261–273, https://doi.org/ 10.1093/gji/ggy423
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