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Ando, M., 1975. Source mechanisms and tectonic significance of historical earthquakes along the Nankai Trough, Japan. Tectonophysics, 27(2):119140. doi:10.1016/0040-1951(75)90102-X Araki, E., Shinohara, M., Sacks, S., Linde, A., Kanazawa, T., Shiobara, H., Mikada, H., and Suyehiro, K., 2004. Improvement of seismic observation in the ocean by use of seafloor boreholes. Bull. Seismol. Soc. Am., 94:678690. Ashi, J., Kuramoto, S., Morita, S., Tsunogai, U., Goto, S., Kojima, S., Okamoto, T., Ishimura, T., Ijiri, A., Toki, T., Kudo, S., Asai, S., and Utsumi, M., 2002. Structure and cold seep of the Nankai accretionary prism off Kumanooutline of the off Kumano survey during YK01-04 Leg 2 cruise. JAMSTEC J. Deep Sea Res., 20:18. Baba, T., and Cummins, P.R., 2005. Contiguous rupture areas of two Nankai Trough earthquakes revealed by high-resolution tsunami waveform inversion. Geophys. Res. Lett., 32(8):L08305. doi:10.1029/2004GL022320 Becker, K., and Davis, E.E., 2005. A review of CORK designs and operations during the Ocean Drilling Program. In Fisher, A.T., Urabe, T., Klaus, A., and the Expedition 301 Scientists, Proc. IODP, 301: College Station TX (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/iodp.proc.301.104.2005 Hori, T., Kato, N., Hirahara, K., Baba, T., and Kaneda, Y., 2004. A numerical simulation of earthquake cycles along the Nankai Trough in southwest Japan: lateral variation in frictional property due to the slab geometry controls the nucleation position. Earth Planet. Sci. Lett., 228(34):215226. doi:10.1016/j.epsl.2004.09.033 Ichinose, G.A., Thio, H.K., Somerville, P.G., Sato, T., and Ishii, T., 2003. Rupture process of the 1944 Tonankai earthquake (Ms 8.1) from the inversion of teleseismic and regional seismograms. J. Geophys. Res., 108(B10):2497. doi:10.1029/2003JB002393 International Working Group, 2001. Earth, Ocean, and Life: Scientific Investigation of the Earth System Using Multiple Drilling Platforms and New TechnologiesIntegrated Ocean Drilling Program Initial Science Plan, 20032013: Washington, DC (International Working Group Support Office). Ito, Y., and Obara, K., 2006. Very low frequency earthquakes within accretionary prisms are very low stress-drop earthquakes. Geophys. Res. Lett., 33(9):L09302. doi:10.1029/2006GL025883 Kinoshita, M., Goto, S., Hamamoto, H., and Yamano, M., 2003. Heat flow distribution and thermal regime across the Nankai accretionary complex. Eos, Trans. Am. Geophys. Union, 84(46) (Suppl.):T42C-06 (Abstract). Miyazaki, S., and Heki, K., 2001. Crustal velocity field of southwest Japan: subduction and arc-arc collision. J. Geophys. Res., 106(B3):43054326. doi:10.1029/2000JB900312 Nakanishi, A., Takahashi, N., Park, J.-O., Miura, S., Kodaira, S., Kaneda, Y., Hirata, N., Iwasaki, T., and Nakamura, M., 2002. Crustal structure across the coseismic rupture zone of the 1944 Tonankai earthquake, the central Nankai Trough seismogenic zone. J. Geophys. Res., 107(B1):2007. doi:10.1029/2001JB000424 Obana, K., Kodaira, S., and Kaneda, Y., 2004. Microseismicity around rupture area of the 1944 Tonankai earthquake from ocean bottom seismograph observations. Earth Planet. Sci. Lett., 222(2):561572. doi:10.1016/j.epsl.2004.02.032 Obara, K., and Ito, Y., 2005. Very low frequency earthquake excited by the 2004 off the Kii Peninsula earthquake: adynamic deformation process in the large accretionary prism. Earth Planets Space, 57:321326. Park, J.-O., Tsuru, T., Kodaira, S., Cummins, P.R., and Kaneda, Y., 2002. Splay fault branching along the Nankai subduction zone. Science, 297(5584):11571160. doi:10.1126/science.1074111 Saffer, D.M., and Marone, C., 2003. Comparison of smectite- and illite-rich gouge frictional properties: application to the up-dip limit of the seismogenic zone along subduction megathrusts. Earth Planet. Sci. Lett., 215(12):219235. doi:10.1016/S0012-821X(03)00424-2 Tobin, H., and Kinoshita, M., 2006. NanTroSEIZE: the IODP Nankai Trough seismogenic zone experiment. Sci. Drill., 2:2327. doi:10.2204/iodp.sd.2.06.2006 Wells, R.E., Blakely, R.J., Sugiyama, Y., Scholl, D.W., and Dinterman, P.A., 2003. Basin-centered asperities in great subduction zone earthquakes: a link between slip, subsidence, and subduction erosion? J. Geophys. Res., 108(B10):2507. doi:10.1029/2002JB002072 |