Proceedings of the 12th International INQUA meeting on paleoseismology, active tectonic and archaeoseismology
84 PATA Days 2024 Rizza, M., L. Bollinger, SN. Sapkota, P. Tapponnier, Y. Klinger, C. Karakaş, E. Kali, M. Etchebes, D.R. Tiwari, I . Siwakoti, A. Bitri, S. Bes de Berc (2019) Post-earthquake aggradation processes to hide surface ruptures in thrust systems: The M8.3, 1934, Bihar- Nepal earthquake ruptures at Charnath Khola (Eastern Nepal), Jour. Geophys. Res. , https: //doi. org/10.1029/2018JB016376 Wesnousky, S. G., Kumahara, Y., Chamlagain, D., Pierce, I . K., Karki, A., & Gautam, D. (2017). Geological observations on large earthquakes along the Himalayan frontal fault near Kathmandu, Nepal. Earth and Planetary Science Letters, 457, 366-375. Wesnousky, S. G., Kumahara, Y., Chamlagain, D., Pierce, I . K., Reedy, T., Angster, S. J., & Giri, B. (2017). Large paleoearthquake timing and displacement near Damak in eastern Nepal on the Himalayan Frontal Thrust. Geophysical Research Letters, 44(16), 8219-8226. Wesnousky, S. G., Kumahara, Y., Chamlagain, D., &Neupane, P. C. (2019). Largehimalayan frontal thrust paleoearthquake at Khayarmara in easternNepal. Journal of AsianEarth Sciences, 174, 346-351. Mugnier, J. L., Huyghe, P., Large, E., Jouanne, F., Guillier, B., & Chakraborty, T. (2022). An embryonic fold and thrust belt south of the Himalayan morphological front: Examples from the Central Nepal and Darjeeling piedmonts. Earth- Science Reviews, 230, 104061. Nakata T., Okumura K., Rockwell T. (1998) First successful paleoseismic trench study on active faults in the Himalaya. EOS Trans 79(45):F615 Pant MR. (2002) A step toward a historical seismicity of Nepal. Adarsa 2:29–60 Sapkota, S.N., L. Bollinger, Y. Klinger, P. Tapponnier, Y. Gaudemer and D. Tiwari (2013) Primary surface ruptures of the great Himalayan earthquakes in 1934 and 1255, Nature Geoscience, 6, 71-76, doi:10.1038/ngeo1669. Sapkota, S. N., Bollinger, L., Perrier, F. (2016). Fatality rates of the M w~ 8.2, 1934, Bihar–Nepal earthquake and comparison with the April 2015 Gorkha earthquake. Earth, Planets and Space, 68(1), 1-9 Riesner, M., Bollinger, L., Rizza, M., Klinger, Y., Karakas, C., Sapkota, SN., ... & Tapponnier, P. (2023). Surface rupture and landscape response in the middle of the great Mw 8.3 1934 earthquake mesoseismal area: Khutti Khola site, Sci Rep 13, 4566, https:// doi.org/10.1038/s41598-023-30697-7 R E F E R E N C E S Arora, S., & Malik, J. N. (2017). Overestimation of the earthquake hazard along the Himalaya: constraints in bracketing of medieval earthquakes from paleoseismic studies. Geoscience Letters, 4, 1-15. Bollinger, L., S.N. Sapkota, P. Tapponnier, Y. Klinger, M. Rizza, J. Van der Woerd, D.R. Tiwari, R. Pandey, A. Bitri, S. Bes de Berc (2014) Estimating the return times of great Himalayan earthquakes in Eastern Nepal: evidence from the Patu and Bardibas strands of the Main Frontal Thrust, Jour. Geophys. Res., DOI: 10.1002/2014JB010970. Bollinger, L., Tapponnier, P., Sapkota, S.N., Klinger, Y. (2016) Slip deficit in central Nepal : Omen for a repeat of the 1344AD earthquake ? Earth, Planets and Space, 68, 1-12, DOI 10.1186/s40623-016-0389-1 Delcaillau, B. (1992), Les Siwaliks du Népal Oriental, Presses du CNRS, 1-205, Paris, France. Duvall, M. J., Waldron, J. W., Godin, L., & Najman, Y. (2020). Active strike- slip faults and an outer frontal thrust in the Himalayan foreland basin. Proceedings of the National Academy of Sciences, 117(30), 17615-17621. Lavé, J., Yule, D., Sapkota, S., Basant, K., Madden, C., Attal, M., & Pandey, R. (2005). Evidence for a great medieval earthquake (~ 1100 AD) in the central Himalayas, Nepal. Science, 307(5713), 1302-1305.
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