Today’s paper list contains a lot of interesting studies on Asian tectonics, a few articles on the Ridgecrest Earthquake, and a number of papers that I was involved in (sorry for the shameless self-promotion). Enjoy reading and let me know if I have missed something.
UPDATE 2021-08-03: Yes, I missed something. I added the last three papers by Rimando & Peace, Kempf & Moernaut, Amey et al., DePaolis et al., & Wils et al.
- Walker, R. T., Bezmenov, Y., Begenjev, G., Carolin, S., Dodds, N., Grützner, C., Jackson, J. A., Mirzin, R., Mousavi, Z. & Rhodes, E. J. (2021): Slip-rate on the Main Köpetdag (Kopeh Dagh) Strike-slip fault, Turkmenistan, and the active tectonics of the South Caspian. Tectonics, 40, e2021TC006846. https://doi.org/10.1029/2021TC006846.
- Zebari, M., Preusser, F., Grützner, C., Navabpour, P. and Ustaszewski, K., (2021): Late Pleistocene-Holocene slip rates in the Northwestern Zagros Mountains (Kurdistan Region of Iraq) derived from luminescence dating of river terraces and structural modeling. Tectonics, dx.doi.org/10.1029/2020TC006565.
- Diercks, M., Grützner, C., & Vrabec, M., & Ustaszewski, K. (2021). A model for the formation of the Pradol (Pradolino) dry valley in W Slovenia and NE Italy. Geologija 64/1, 21-33.
- Mousavi, Z., Fattahi, M., Khatib, M., Talebian, M., Pathier, E., Walpersdorf, A., … & Walker, R. T. (2021). Constant slip‐rate on the Doruneh strike‐slip fault, Iran, averaged over Late Pleistocene, Holocene, and decadal timescales. Tectonics, e2020TC006256.
- Pizer, C., Clark, K., Howarth, J., Garrett, E., Wang, X., Rhoades, D., Woodroffe, S. (2021). Paleotsunamis on the Southern Hikurangi Subduction Zone, New Zealand, Show Regular Recurrence of Large Subduction Earthquakes. The Seismic Record 2021; 1(2), 75–84.
- Hu, Z., Yang, X., Yang, H., Huang, W., Wu, G., Miao, S., & Zhang, L. (2021). Slip rate and paleoseismology of the Bolokenu‐Aqikekuduk (Dzhungarian) right‐lateral strike‐slip fault in the Northern Tian Shan, NW China. Tectonics, e2020TC006604.
- Shelef, E., & Goren, L. (2021). The rate and extent of wind-gap migration regulated by tributary confluences and avulsions. Earth Surface Dynamics, 9(4), 687-700.
- Michel, S., Jolivet, R., Rollins, C., Jara, J., & Zilio, L. D. (2021). Seismogenic potential of the Main Himalayan Thrust constrained by coupling segmentation and earthquake scaling. Geophysical Research Letters, e2021GL093106.
- Liu, G., Qiao, X., Yu, P., Zhou, Y., Zhao, B., & Xiong, W. (2021). Rupture Kinematics of the 11 January 2021 Mw 6.7 Hovsgol, Mongolia, Earthquake and Implications in the Western Baikal Rift Zone. Seismological Research Letters.
- Siravo, G., Molin, P., Sembroni, A., Fellin, M. G., & Faccenna, C. (2021). Tectonically driven drainage reorganization in the Eastern Cordillera, Colombia. Geomorphology, 107847.
- Morel, D. L., Morell, K. D., Keller, E. A., & Rittenour, T. M. (2021). Quaternary chronology and rock uplift recorded by marine terraces, Gaviota coast, Santa Barbara County, California, USA. GSA Bulletin.
- Kázmér, M., Al‐Tawalbeh, M., Győri, E., Laszlovszky, J., & Gaidzik, K. (2021). Destruction of the Royal Town at Visegrád, Hungary: Historical Evidence and Archaeoseismology of the AD 1541 Earthquake at the Proposed Danube Dam Site. Seismological Research Letters.
- Kázmér M., Kovács A. (2021): Földrengés nyomai a kalotaszegi Magyargyerőmonostor református templomán. Evidence for earthquake damage in the Calvinist church of Mănăstireni (Magyargyerőmonostor, Romania). XXII. Bányászati, Kohászati és Földtani Konferencia, 2021. Május 8., Kolozsvár, pp. 76-8.
- Im, K., Avouac, J. P., Heimisson, E. R., & Elsworth, D. (2021). Ridgecrest aftershocks at Coso suppressed by thermal destressing. Nature, 595(7865), 70-74.
- Gao, Y., Duan, H., Zhang, Y., Chen, J., Jian, H., Wu, R., & Yin, W. (2021). Coseismic fault-slip distribution of the 2019 Ridgecrest Mw6. 4 and Mw7. 1 earthquakes. Scientific reports, 11(1), 1-13.
- Yue, H., Sun, J., Wang, M., Shen, Z., Li, M., Xue, L., … & Lay, T. (2021). The 2019 Ridgecrest, California earthquake sequence: Evolution of seismic and aseismic slip on an orthogonal fault system. Earth and Planetary Science Letters, 570, 117066.
- Poli, M. E., Monegato, G., Fontana, A., Mozzi, P., Rossato, S., Zampieri, D., … & Zanferrari, A. (2021). Comment on “Fragmentation of the Adriatic promontory: new chronological constraints from Neogene shortening rates across the Southern Alps (NE Italy)” by Moulin and Benedetti, 2018. Tectonics, e2019TC005696.
- Moulin, A. & Benedetti, L. (2021). Reply to comments by Poli et al. 2020 on “Fragmentation of the Adriatic promontory: new chronological constraints from Neogene shortening rates across the Southern Alps (NE Italy)”. Tectonics, e2020TC006564.
- Yu, C., Li, Z., & Song, C. (2021). Geodetic constraints on recent subduction earthquakes and future seismic hazards in the southwestern coast of Mexico. Geophysical Research Letters, e2021GL094192.
- Combey, A., Tricoche, A., Audin, L., Gandreau, D., Escóbar, C. B., Abuhadba, J. B., … & Rodríguez-Pascua, M. (2021). Monumental inca remains and past seismic disasters: A relational database to support archaeoseismological investigations and cultural heritage preservation in the Andes. Journal of South American Earth Sciences, 103447.
- Ganas, A., Valkaniotis, S., Briole, P., Serpetsidaki, A., Kapetanidis, V., Karasante, I., … & Sokos, E. (2021). Domino-style earthquakes along blind normal faults in Northern Thessaly (Greece): kinematic evidence from field observations, seismology, SAR interferometry and GNSS. Bulletin of the Geological Society of Greece, 58, 37-86.
- Zhao, Y., Grujic, D., Baruah, S., Drukpa, D., Elkadi, J., Hetényi, G., … & Nepal, N. (2021). Closing the Seismic Gap: Paleoseismological findings at a new Himalayan Main Frontal Thrust trench increase the extent of the 1714 Bhutan Earthquake. Frontiers in Earth Science, 9, 607.
- Ali, U., Ali, S. A., Yousuf, M., Rasool, Q. A., Ahmad, M., & Ahmad, I. (2021). Consideration of geomorphic indices in assessment of relative active tectonics in a part of seismogenic compressional Kashmir Basin. Arabian Journal of Geosciences, 14(13), 1-15.
- Karlsson, K. W., Rockwell, T. K., Fletcher, J. M., Figueiredo, P. M., Rosas, J. F. C., Gontz, A. M., … & Loya, R. L. (2021). Large Holocene ruptures on the Cañada David detachment, Baja California, Mexico; implications for the seismogenesis of low-angle normal faults. Earth and Planetary Science Letters, 570, 117070.
- Liu, F., Elliott, J. R., Craig, T. J., Hooper, A., & Wright, T. J. (2021). Improving the Resolving Power of InSAR for Earthquakes Using Time Series: A Case Study in Iran. Geophysical Research Letters, e2021GL093043.
- Adhikari, L. B., Bollinger, L., Vergne, J., Lambotte, S., Chanard, K., Laporte, M., … & Perrier, F. (2021). Orogenic collapse and stress adjustments revealed by an intense seismic swarm following the 2015 Gorkha earthquake in Nepal. Frontiers in Earth Science, 9, 524.
- Martínez-Loriente, S., Sallarès, V., & Gràcia, E. (2021). The Horseshoe Abyssal plain Thrust could be the source of the 1755 Lisbon earthquake and tsunami. Communications Earth & Environment 2:145.
- Zellman, M. S., Ostenaa, D. A., & Brown, M. P. (2021). Subsurface Characterization of the Quaternary Active Cheraw Fault in Southeastern Colorado Based on Seismic Imaging. The Seismic Record, 1(1), 56-65.
- Balling, P., Tomljenović, B., Schmid, S. M., & Ustaszewski, K. (2021). Contrasting along-strike deformation styles in the central external Dinarides assessed by balanced cross-sections: Implications for the tectonic evolution of its Paleogene flexural foreland basin system. Global and Planetary Change, 103587.
- Li, Y., Zhang, Z. & Xin, D. (2021). A Composite Catalog of Damaging Earthquakes for Mainland China. SRL.
- Di Giacomo, D., & Sarabia, A. M. (2021). Use of macroseismic and instrumental data to reassess earthquake locations: Examples from pre-digital earthquakes in Colombia. Journal of South American Earth Sciences, 111, 103467.
- Zhu, Y., Diao, F., Fu, Y., Liu, C., & Xiong, X. (2021). Slip rate of the seismogenic fault of the 2021 Maduo earthquake in western China inferred from GPS observations. Science China Earth Sciences, 1-8.
- Zinke, R., Dolan, J. F., Rhodes, E. J., Van Dissen, R. J., Hatem, A. E., McGuire, C. P., … & Grenader, J. R. (2021). Latest Pleistocene–Holocene incremental slip rates of the Wairau fault: Implications for long‐distance and long‐term coordination of faulting between North and South Island, New Zealand. Geochemistry, Geophysics, Geosystems, e2021GC009656.
- Hampel, A., Hetzel, R., & Erdmann, M. S. (2021). Postglacial slip distribution along the Teton normal fault (Wyoming, USA), derived from tectonically offset geomorphological features. Geosphere.
- Nazari, H., Ritz, J. F., Burg, J. P., Shokri, M., Haghipour, N., Vizheh, M. M., … & Ensani, M. (2021). Active tectonics along the Khazar fault (Alborz, Iran). Journal of Asian Earth Sciences, 219, 104893.
- Calamita, F., Pace, P., Scisciani, V., Properzi, F., & Francioni, M. (2021). Dinaric up-thrusts in the Pliocene evolution of the Central Apennines thrust belt of Italy: the Montagna dei Fiori structure. Geological Magazine, 1-16.
- Papadopoulos, G. A., Agalos, A., Karavias, A., Triantafyllou, I., Parcharidis, I., & Lekkas, E. (2021). Seismic and Geodetic Imaging (DInSAR) Investigation of the March 2021 Strong Earthquake Sequence in Thessaly, Central Greece. Geosciences, 11(8), 311.
- Métois, M., Martelat, J.-E., Billant, J., Andreani, M., Escartin, J., Leclerc, F., & the ICAP (2021). Deep oceanic submarine fieldwork with undergraduate students, an exceptional immersive experience (Minerve software). Solid Earth Discussions.
- Rimando, J., & Peace, A. (2021). Reactivation Potential of Intraplate Faults in the Western Quebec Seismic Zone, Eastern Canada. Earth and Space Science, e2021EA001825.
- Kempf, P., & Moernaut, J. (2021). Age Uncertainty in Recurrence Analysis of Paleoseismic Records. Earth and Space Science Open Archive ESSOAr.
- Amey, R. M., Elliott, J. R., Hussain, E., Walker, R., Pagani, M., Silva, V., … & Watson, C. S. (2021). Significant Seismic Risk Potential from Buried Faults Beneath Almaty City, Kazakhstan, revealed from high‐resolution satellite DEMs. Earth and Space Science, e2021EA001664.
- DePaolis, J. M., Dura, T., MacInnes, B., Ely, L. L., Cisternas, M., Carvajal, M., … & Weiss, R. (2021). Stratigraphic evidence of two historical tsunamis on the semi-arid coast of north-central Chile. Quaternary Science Reviews, 266, 107052.
- Wils, K., Deprez, M., Kissel, C., Vervoort, M., Van Daele, M., Daryono, M. R., … & De Batist, M. (2021). Earthquake doublet revealed by multiple pulses in lacustrine seismo-turbidites. Geology.
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