A. Ben-menahem, M. Rosenmandd07, ]. Dutykh, F. Diasdd09, ]. Dutykh et al., Amplitude patterns of tsunami waves from submarine earthquakes Water waves generated by a moving bottom Tsunami generation by dynamic displacement of sea bed due to dip-slip faulting, Tsunami and Nonlinear Waves, pp.3097-3128, 1972.

D. Dutykh, F. Dias, and Y. Kervella, Linear theory of wave generation by a moving bottom, Dut07] D. Dutykh. Mathematical modelling of tsunami waves, pp.499-504, 2006.
DOI : 10.1016/j.crma.2006.09.016

URL : https://hal.archives-ouvertes.fr/hal-00114954

M. Ergun, S. Okay, C. Sari, E. Z. Oral, M. Ash et al., Gravity anomalies of the Cyprus Arc and their tectonic implications A two-dimensional analysis of surface deformation due to dip-slip faulting Tsunami earthquakes and subduction processes near deep-sea trenches, Marine Geology Bull. Seism. Soc. Am. J. Geophys. Res, vol.221, issue.3, pp.349-358667, 1976.

C. W. Fuller, S. D. Willett, M. T. Brandongus78-]-v, and . Gusiakov, Formation of forearc basins and their influence on subduction zone earthquakes Ill-posed problems of mathematical physics and interpretation of geophysical data, chapter Static displacement on the surface of an elastic space, Geology VC SOAN SSSR, vol.34, issue.8, pp.65-68, 1978.

B. A. Hoogakker, R. G. Rothwell, E. J. Rohling, M. Paterne, D. A. Stow et al., Variations in terrigenous dilution in western Mediterranean Sea pelagic sediments in response to climate change during the last glacial cycle, Marine Geology, vol.211, issue.1-2, pp.21-43, 2004.
DOI : 10.1016/j.margeo.2004.07.005

M. Ioualalen, J. Asavanant, N. Kaewbanjak, S. T. Grilli, J. T. Kirby et al., Modeling the 26 December 2004 Indian Ocean tsunami: Case study of impact in Thailand, Modeling the 26, pp.7024-7039, 2004.
DOI : 10.1029/2006JC003850

URL : https://hal.archives-ouvertes.fr/hal-00407731

C. Kassiotis, F. Dias, A. Ibrahimbegovic, and D. Dutykh, A partitioned approach to model tsunami impact on coastal protections, ECCOMAS Thematic Conference on Multi-scale Computational Methods for Solids and Fluids, pp.134-139, 2007.

]. T. Lka-+-05, H. Lay, C. J. Kanamori, M. Ammon, S. N. Nettles et al., The great Sumatra- Andaman earthquake of 26 The applied dynamics of ocean surface waves, Science World Scientific, vol.308, issue.61 8, pp.1127-1133, 1971.

]. S. Nss-+-05, I. Neetu, R. Suresh, D. Shankar, S. S. Shankar et al., Comment on The Great Sumatra-Andaman Earthquake of 26 Surface deformation due to shear and tensile faults in a half-space Seismic parameters controlling far-field tsunami amplitudes: A review Synolakis. A theoretical comparison of tsunamis from dislocations and landslides Tsunami science before and beyond Boxing Day, Science Bull. Seism. Soc. Am. Natural Hazards Pure and Applied Geophysics Phil. Trans. R. Soc. A, vol.310, issue.22, pp.1431-1431, 1985.

C. Synolakis, P. Liu, G. Carrier, and H. Yeh, SEISMOLOGY: Enhanced: Tsunamigenic Sea-Floor Deformations, Science, vol.278, issue.5338, pp.598-600, 1997.
DOI : 10.1126/science.278.5338.598