Prevalence of viscoelastic relaxation after the 2011 Tohoku-oki earthquake
暂无分享,去创建一个
Motoyuki Kido | Yusaku Ohta | Ryota Hino | Yan Hu | Jiangheng He | Satoshi Miura | Hiromi Fujimoto | Yukihito Osada | Kelin Wang | Takeshi Iinuma | M. Kido | Y. Osada | H. Fujimoto | Kelin Wang | Jiangheng He | R. Hino | Tianhaozhe Sun | T. Iinuma | Y. Ohta | S. Miura | Tianhaozhe Sun | Yan Hu
[1] Jim Mori,et al. A review of the 2011 Tohoku-Oki earthquake (Mw 9.0): Large-scale rupture across heterogeneous plate coupling , 2013 .
[2] W. Peltier,et al. The Viscosities of the Earth's Mantle , 2013 .
[3] M. Simons,et al. An aseismic slip pulse in northern Chile and along‐strike variations in seismogenic behavior , 2006 .
[4] Kelin Wang,et al. Sharp thermal transition in the forearc mantle wedge as a consequence of nonlinear mantle wedge flow , 2009 .
[5] Arthur Raefsky,et al. A simple and efficient method for introducing faults into finite element computations , 1981 .
[6] T. Kanazawa,et al. Seismic Evidence for Sharp Lithosphere-Asthenosphere Boundaries of Oceanic Plates , 2009, Science.
[7] Kelin Wang,et al. Three-dimensional viscoelastic finite element model for postseismic deformation of the great 1960 Chile earthquake , 2004 .
[8] Kelin Wang,et al. Deformation cycles of subduction earthquakes in a viscoelastic Earth , 2012, Nature.
[9] Kenji Satake,et al. Tsunami source of the 2011 off the Pacific coast of Tohoku Earthquake , 2011 .
[10] W. Peltier. The impulse response of a Maxwell Earth , 1974 .
[11] Motoyuki Kido,et al. Trench‐normal variation in observed seafloor displacements associated with the 2011 Tohoku‐Oki earthquake , 2011 .
[12] M. Kido,et al. Temporal variation of sound speed in ocean: a comparison between GPS/acoustic and in situ measurements , 2008 .
[13] J. Nakajima,et al. Anomalous deepening of a seismic belt in the upper-plane of the double seismic zone in the Pacific slab beneath the Hokkaido corner: Possible evidence for thermal shielding caused by subducted forearc crust materials , 2010 .
[14] Akira Asada,et al. Displacement Above the Hypocenter of the 2011 Tohoku-Oki Earthquake , 2011, Science.
[15] Tomokazu Kobayashi,et al. Coseismic and postseismic slip of the 2011 magnitude-9 Tohoku-Oki earthquake , 2011, Nature.
[16] M. Fujita,et al. Evidence of viscoelastic deformation following the 2011 Tohoku‐Oki earthquake revealed from seafloor geodetic observation , 2014 .
[17] Yan Hu,et al. Contributions of poroelastic rebound and a weak volcanic arc to the postseismic deformation of the 2011 Tohoku earthquake , 2014, Earth, Planets and Space.
[18] Fred Spiess,et al. Suboceanic Geodetic Measurements , 1985, IEEE Transactions on Geoscience and Remote Sensing.
[19] K. Fischer,et al. The Lithosphere- Asthenosphere Boundary , 2010 .
[20] F. D. Stacey,et al. Anelasticity in the Earth , 1981 .
[21] Richard G. Gordon,et al. Geologically current plate motions , 2010 .
[22] Yehuda Bock,et al. Frictional Afterslip Following the 2005 Nias-Simeulue Earthquake, Sumatra , 2006, Science.
[23] J. Nakajima,et al. Anomalous low‐velocity zone and linear alignment of seismicity along it in the subducted Pacific slab beneath Kanto, Japan: Reactivation of subducted fracture zone? , 2006 .
[24] Motoyuki Kido,et al. Coseismic slip distribution of the 2011 off the Pacific Coast of Tohoku Earthquake (M9.0) refined by means of seafloor geodetic data , 2012 .
[25] H. Noda,et al. Transient behavior and stability analyses of halite shear zones with an empirical rate-and-state friction to flow law , 2012 .
[26] S. Karato. On the origin of the asthenosphere , 2012 .
[27] Jeffrey T. Freymueller,et al. A viscoelastic and afterslip postseismic deformation model for the 1964 Alaska earthquake , 2009 .
[28] Motoyuki Kido,et al. Seafloor displacement at Kumano-nada caused by the 2004 off Kii Peninsula earthquakes, detected through repeated GPS/Acoustic surveys , 2006 .
[29] M. Fujita,et al. Interplate coupling off northeastern Japan before the 2011 Tohoku‐oki earthquake, inferred from seafloor geodetic data , 2013 .
[30] N. Schmerr. The Gutenberg Discontinuity: Melt at the Lithosphere-Asthenosphere Boundary , 2012, Science.
[31] Tomokazu Kobayashi,et al. Preceding, coseismic, and postseismic slips of the 2011 Tohoku earthquake, Japan , 2012 .
[32] N. Umino,et al. Mapping the mantle wedge and interplate thrust zone of the northeast Japan arc , 2009 .
[33] Ryota Hino,et al. Mantle wedge structure in the Miyagi Prefecture forearc region, central northeastern Japan arc, and its relation to corner‐flow pattern and interplate coupling , 2011 .
[34] F. Chester,et al. Low Coseismic Friction on the Tohoku-Oki Fault Determined from Temperature Measurements , 2013, Science.
[35] H. Shiobara,et al. Aftershocks near the updip end of the 2011 Tohoku-Oki earthquake , 2013 .
[36] Kelin Wang,et al. Common depth of slab‐mantle decoupling: Reconciling diversity and uniformity of subduction zones , 2009 .
[37] Kelin Wang,et al. Spherical‐Earth finite element model of short‐term postseismic deformation following the 2004 Sumatra earthquake , 2012 .
[38] N. C. Peterson,et al. Supporting Online Material Materials and Methods Som Text Figs. S1 to S11 Schemes S1 to S10 Tables S1 and S2 a Global View of the Lithosphere-asthenosphere Boundary , 2022 .
[39] D. I. Frolov,et al. Rapid postseismic relaxation after the great 2006–2007 Kuril earthquakes from GPS observations in 2007–2011 , 2013 .
[40] H. Terasaki,et al. Ponded melt at the boundary between the lithosphere and asthenosphere , 2013 .
[41] F. Pollitz,et al. Post-seismic relaxation following the great 2004 Sumatra-Andaman earthquake on a compressible self-gravitating Earth , 2006 .
[42] H. Fujimoto. Seafloor Geodetic Approaches to Subduction Thrust Earthquakes , 2014 .