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Bozdag, E., Trampert, J., (2010), "Assessment of tomographic mantle models using spectral element seismograms", Geophysical Journal International, 180, 3: pg: 1187--1199, (DOI: 10.1111/j.1365-246X.2009.04468.x). Cited by:
Liu, Q., Tromp, J., (2008), "Finite-frequency sensitivity kernels for global seismic wave propagation based upon adjoint methods", Geophysical Journal International, 174, 1: pg: 265--286, (DOI: 10.1111/j.1365-246X.2008.03798.x). Cited by:
Bozdag, E., Trampert, J., (2008), "On crustal corrections in surface wave tomography", Geophysical Journal International, 172, 3: pg: 1066--1082, (DOI: 10.1111/j.1365-246X.2007.03690.x). Cited by:
Ma, Z., Masters, G., Mancinelli, N., (2016), "Two-dimensional global Rayleigh wave attenuation model by accounting for finite-frequency focusing and defocusing effect", Geophysical Journal International, 204, 1: pg: 631--649, (DOI: 10.1093/gji/ggv480). Cited by:
Afanasiev, M., Peter, D., Sager, K., Simut, S., Ermert, L., Krischer, L., Fichtner, A., (2016), "Foundations for a multiscale collaborative Earth model", Geophysical Journal International, 204, 1: pg: 39--58, (DOI: 10.1093/gji/ggv439). Cited by:
Pedersen, H. A., Boué, P., Poli, P., Colombi, A., (2015), "Arrival angle anomalies of Rayleigh waves observed at a broadband array: a systematic study based on earthquake data, full waveform simulations and noise correlations", Geophysical Journal International, 203, 3: pg: 1626--1641, (DOI: 10.1093/gji/ggv382). Cited by:
Waszek, L., Deuss, A., (2015), "Observations of exotic inner core waves", Geophysical Journal International, 200, 3: pg: 1636--1650, (DOI: 10.1093/gji/ggu497). Cited by:
Komatitsch, D., Tromp, J., (2002), "Spectral-element simulations of global seismic wave propagation-II. Three-dimensional models, oceans, rotation and self-gravitation", Geophysical Journal International, 150, 1: pg: 303--318, (DOI: 10.1046/j.1365-246X.2002.01716.x). Cited by:
Komatitsch, D., Tromp, J., (2002), "Spectral-element simulations of global seismic wave propagation-I. Validation", Geophysical Journal International, 149, 2: pg: 390--412, (DOI: 10.1046/j.1365-246X.2002.01653.x). Cited by:
Zhu, H., Bozdag, E., Peter, D., Tromp, J., (2012), "Seismic wavespeed images across the Iapetus and Tornquist suture zones", Geophysical Research Letters, 39, 18: pg: L18304, (DOI: 10.1029/2012GL053053). Cited by:
Komatitsch, D., Vinnik, L. P., Chevrot, S., (2010), "SHdiff-SVdiff splitting in an isotropic Earth", Journal of Geophysical Research, 115, B7: (DOI: 10.1029/2009JB006795). Cited by:
Hjörleifsdóttir, V., Kanamori, H., Tromp, J., (2009), "Modeling 3-D wave propagation and finite slip for the 1998 Balleny Islands earthquake", Journal of Geophysical Research, 114, B3: pg: B03301, (DOI: 10.1029/2008JB005975). Cited by:
Chen, M., Tromp, J., Helmberger, D., Kanamori, H., (2007), "Waveform modeling of the slab beneath Japan", Journal of Geophysical Research, 112, B2: pg: B02305, (DOI: 10.1029/2006JB004394). Cited by:
Ritsema, J., Rivera, L. A., Komatitsch, D., Tromp, J., Heijst, H-J, (2002), "Effects of crust and mantle heterogeneity on PP/P and SS/S amplitude ratios", Geophysical Research Letters, 29, 10: pg: 72-1-72-4, (DOI: 10.1029/2001GL013831). Cited by:
Tsuboi, S., Komatitsch, D., Ji, C., Tromp, J., (2003), "Broadband modeling of the 2002 Denali fault earthquake on the Earth Simulator", Physics of the Earth and Planetary Interiors, 139, 3-4: pg: 305--313, (DOI: 10.1016/j.pepi.2003.09.012). Cited by:
Komatitsch, D., Michéa, D., Erlebacher, G., (2009), "Porting a high-order finite-element earthquake modeling application to NVIDIA graphics cards using CUDA", Journal of Parallel and Distributed Computing, 69, 5: pg: 451--460, (DOI: 10.1016/j.jpdc.2009.01.006). Cited by:
Komatitsch, D., Göddeke, D., Erlebacher, G., Michéa, D., (2010), "Modeling the propagation of elastic waves using spectral elements on~a~cluster of~192 GPUs", Computer Science -- Research and Development, 25, 1-2: pg: 75--82, (DOI: 10.1007/s00450-010-0109-1). Cited by:
Sun, D., Miller, M. S., (2013), "Study of the western edge of the African Large Low Shear Velocity Province: Western Edge of the African LLSVP", Geochemistry, Geophysics, Geosystems, 14, 8: pg: 3109--3125, (DOI: 10.1002/ggge.20185). Cited by:
Maceira, M., Larmat, C., Porritt, R. W., Higdon, D. M., Rowe, C. A., Allen, R. M., (2015), "On the validation of seismic imaging methods: Finite frequency or ray theory?", Geophysical Research Letters, 42, 2: pg: 323--330, (DOI: 10.1002/2014GL062571). Cited by:
Komatitsch, D., Tsuboi, S., Ji, C., Tromp, J., (2003), "A 14.6 Billion Degrees of Freedom, 5 Teraflops, 2.5 Terabyte Earthquake Simulation on the Earth Simulator", Proceedings of the 2003 ACM/IEEE Conference on Supercomputing, Sc ’03, Acm, New York, NY, USA: pg: 4, (DOI: 10.1145/1048935.1050155). Cited by:
Bautista-Gomez, L., Tsuboi, S., Komatitsch, D., Cappello, F., Maruyama, N., Matsuoka, S., (2011), "FTI: High Performance Fault Tolerance Interface for Hybrid Systems", Proceedings of 2011 International Conference for High Performance Computing, Networking, Storage and Analysis, Sc ’11, Acm, New York, NY, USA: pg: 32-1, (DOI: 10.1145/2063384.2063427). Cited by:
Komatitsch, D., Tromp, J., (2001), "Modeling of Seismic Wave Propagation at the Scale of the Earth on a Large Beowulf", Proceedings of the 2001 ACM/IEEE Conference on Supercomputing, SC '01, Acm, New York, NY, USA: pg: 42, (DOI: 10.1145/582034.582076). Cited by:
Labarta, Jesúsand Sato, Toshinori (2008), "High-Performance Computing", Springer Berlin Heidelberg: 978-3-540-77703-8, (DOI: 10.1007/978-3-540-77704-5). Cited by:
Jayalakshmi, S., Raghukanth, S. T. G., (2016), "Regional ground motion simulation around Delhi due to future large earthquake", Natural Hazards, 82, 3: pg: 1479--1513, (DOI: 10.1007/s11069-016-2254-8). Cited by:
Lu, C., Grand, S. P., (2016), "The effect of subducting slabs in global shear wave tomography", Geophysical Journal International, 205, 2: pg: 1074--1085, (DOI: 10.1093/gji/ggw072). Cited by:
Dimitri Komatitsch, Zhinan Xie, (2016), "Anelastic sensitivity kernels with parsimonious storage for adjoint tomography and full waveform inversion", Geophysical Journal International, 206, 3: pg: 1467--1478, (DOI: 10.1093/gji/ggw224). Cited by:
Komatitsch, D., Vilotte, J-P, Tromp, J., Afanasiev, M., Bozdag, E., Charles, J., Chen, M., Goddeke, D., Hjorleifsdottir, V., Labarta, J., Le Goff, N., Le Loher, P., Liu, Q., Maggi, A., Martin, R., McRitchie, D., Messmer, P., Michea, D., Nissen-Meyer, T., Peter, D., Rietmann, M., Andrade, S., Savage, B., Schuberth, B., Siemenski, A., Strand, L., Tape, C., Xie, Z., Zhu, H., (2014), "SPECFEM3D GLOBE v6.0.0 [software]", Computational Infrastructure for Geodynamics: . Cited by:
Komatitsch, D., Vilotte, J-P, Tromp, J., Afanasiev, M., Bozdag, E., Charles, J., Chen, M., Goddeke, D., Hjorleifsdottir, V., Labarta, J., Le Goff, N., Le Loher, P., Liu, Q., Maggi, A., Martin, R., McRitchie, D., Messmer, P., Michea, D., Nissen-Meyer, T., Peter, D., Rietmann, M., Andrade, S., Savage, B., Schuberth, B., Siemenski, A., Strand, L., Tape, C., Xie, Z., Zhu, H., (2015), "SPECFEM3D GLOBE v7.0.0 [software]", Computational Infrastructure for Geodynamics: . Cited by:
Tsuda, K., Iwase, S., Uratani, H., Ogawa, S., Watanabe, T., Miyakoshi, J. ichi, Ampuero, J. P., (2017), "Dynamic Rupture Simulations Based on the Characterized Source Model of the 2011 Tohoku Earthquake", Pure and Applied Geophysics, 174: pg: 3357--3368, (DOI: 10.1007/s00024-016-1446-1). Cited by:
Kelevitz, K., Houlié, N., Giardini, D., Rothacher, M., (2017), "Performance of High-Rate GPS Waveforms at Long Periods: Moment Tensor Inversion of the 2003 Mw~8.3 Tokachi-Oki Earthquake", Bulletin of the Seismological Society of America, Bulletin of the Seismological Society of America, 107, 4: pg: 1891--1903, (DOI: 10.1785/0120160338). Cited by:
Larmat, Carène, Maceira, M., Higdon, D. M., Anderson, D. N., (2017), "Joining statistics and geophysics for assessment and uncertainty quantification of three-dimensional seismic Earth models", Statistical Analysis and Data Mining: The ASA Data Science Journal, Wiley Subscription Services, Inc., A Wiley Company, 10, 5: pg: 277-289, (DOI: 10.1002/sam.11353). Cited by:
Modrak, R., Tromp, J., (2016), "Seismic waveform inversion best practices: regional, global and exploration test cases", Geophysical Journal International, 206, 3: pg: 1864--1889, (DOI: 10.1093/gji/ggw202). Cited by:
Bozdag, E., Peter, D., Lefebvre, M., Komatitsch, D., Tromp, J., Hill, J., Podhorszki, N., Pugmire, D., (2016), "Global adjoint tomography: first-generation model", Geophysical Journal International, 207, 3: pg: 1739--1766, (DOI: 10.1093/gji/ggw356). Cited by:
Liu, S., Yang, D., Dong, X., Liu, Q., Zheng, Y., (2017), "Element-by-element parallel spectral-element methods for 3-D teleseismic wave modeling", Solid Earth, 8, 5: pg: 969--986, (DOI: 10.5194/se-8-969-2017). Cited by:
Khan, S., Meijde, M., Werff, H., Shafique, M., (2017), "Impact of Mesh and DEM Resolutions in SEM Simulation of 3D Seismic Response", Bulletin of the Seismological Society of America, 107, 5: pg: 2151, (DOI: 10.1785/0120160213). Cited by:
Zhan, Q., Ren, Q., Zhuang, M., Sun, Q., Liu, Q. H., (2017), "An exact Riemann solver for wave propagation in arbitrary anisotropic elastic media with fluid coupling", Computer Methods in Applied Mechanics and Engineering, 329: pg: 24--39, (DOI: 10.1016/j.cma.2017.09.007). Cited by:
Holden, C., Kaneko, Y., D’Anastasio, E., Benites, R., Fry, B., Hamling, I. J., (2017), "The 2016 Kaikoura earthquake revealed by kinematic source inversion and seismic wavefield simulations: Slow rupture propagation on a geometrically complex crustal fault network", Geophysical Research Letters, 44, 11: pg: 11,320-11,328, (DOI: 10.1002/2017GL075301). Cited by:
Ermert, L., Sager, K., Afanasiev, M., Boehm, C., Fichtner, A., (2017), "Ambient seismic source inversion in a heterogeneous Earth -- Theory and application to the Earth's hum", Journal of Geophysical Research: Solid Earth, 122, 11: pg: 9184-9207, (DOI: 10.1002/2017JB014738). Cited by:
Borgeaud, A. F. E., Kawai, K., Konishi, K., Geller, R. J., (2017), "Imaging paleoslabs in the D`` layer beneath Central America and the Caribbean using seismic waveform inversion", Science Advances, 3, 11: pg: e1602700, (DOI: 10.1126/sciadv.1602700). Cited by:
Sun, Y-C, Zhang, W., Chen, X., (2018), "3D Seismic Wavefield Modeling in Generally Anisotropic Media with a Topographic Free Surface by the Curvilinear Grid Finite-Difference Method", Bulletin of the Seismological Society of America, 108, 3A: pg: 1287--1301, (DOI: 10.1785/0120170154). Cited by:
Godfrey, K. E., Dalton, C. A., Ma, Z., Hjörleifsdóttir, V., Ekström, G., (2019), "A comparison of approaches for the prediction and inversion of surface wave phase delays", Geophysical Journal International, 217, 3: pg: 1496--1514, (DOI: 10.1093/gji/ggz096). Cited by:
Shakibay Senobari, Nader, (2019), "Combining Seismology and Geodesy to Better Constrain Earthquake Source Parameters and Shallow Fault Behavior", ProQuest Dissertations Publishing, University of California, Riverside: . Cited by:
White, L. T., Rawlinson, N., Lister, G. S., Waldhauser, F., Hejrani, B., Thompson, D. A., Tanner, D., Macpherson, C. G., Tkalcic, H., Morgan, J. P., (2019), "Earth's deepest earthquake swarms track fluid ascent beneath nascent arc volcanoes", Earth and Planetary Science Letters, 521: pg: 25--36, (DOI: 10.1016/j.epsl.2019.05.048). Cited by:
Borgeaud, A. F. E., Kawai, K., Geller, R. J., (2019), "3-D S-velocity structure of the mantle transition zone beneath Central America and the Gulf of Mexico inferred using waveform inversion", Journal of Geophysical Research: Solid Earth, 124, 9: pg: 9664--9681, (DOI: 10.1029/2018JB016924). Cited by:
Haugland, S. M., Ritsema, J., Sun, D., Trampert, J., Koroni, M., (2019), "Common reflection point mapping of the mantle transition zone using recorded and 3-D synthetic ScS reverberations", Geophysical Journal International, 220, 1: pg: 724--736, (DOI: 10.1093/gji/ggz467). Cited by:
Hariharan, A., Dalton, C. A., Ma, Z., Ekström, G., (2019), "Evidence of Overtone Interference in Fundamental-Mode Rayleigh Wave Phase and Amplitude Measurements", Journal of Geophysical Research: Solid Earth, : (DOI: 10.1029/2019JB018540). Cited by:
Ringler, A. T., Gee, L. S., Marshall, B., Hutt, C. R., Storm, T., (2012), "Data Quality of Seismic Records from the Tohoku, Japan, Earthquake as Recorded across the Albuquerque Seismological Laboratory Networks", Seismological Research Letters, 83, 3: pg: 575--584, (DOI: 10.1785/gssrl.83.3.575). Cited by:
Tesoniero, A., Leng, K., Long, M., Nissen-Meyer, T., (2020), "Full wave sensitivity of SK(K)S phases to arbitrary anisotropy in the upper and lower mantle", Geophysical Journal International, : (DOI: 10.1093/gji/ggaa171). Cited by:
Xia, H., Song, X., Weaver, R., Li, J., (2020), "Amplitude and decay of long-period coda of great earthquakes", Physics of the Earth and Planetary Interiors, : pg: 106538, (DOI: 10.1016/j.pepi.2020.106538). Cited by:
Lei, W., Wen, L., (2020), "Widespread Small-Scale Anisotropic Structure in the Lowermost Mantle beneath the North American Continent and Northeastern Pacific", Seismological Research Letters, : (DOI: 10.1785/0220200055). Cited by:
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