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Tan, J., Langston, C. A., Ni, S., (2020), "Shallow Shear-Wave Velocity Structure in Oklahoma Based on the Joint Inversion of Ambient Noise Dispersion and Teleseismic P-Wave Receiver Functions", Bulletin of the Seismological Society of America, : (DOI: 10.1785/0120200246). Cited by:
Wang, X-C, Wang, J-T, Zhang, L., Li, S., Zhang, C-H, (2021), "A Multidimension Source Model for Generating Broadband Ground Motions with Deterministic 3D Numerical Simulations", Bulletin of the Seismological Society of America, : (DOI: 10.1785/0120200221). Cited by:
Latecki, H., Molinari, I., Stipcevic, J., (2021), "3D physics-based seismic shaking scenarios for city of Zagreb, Capital of Croatia", Bulletin of Earthquake Engineering, : (DOI: 10.1007/s10518-021-01227-5). Cited by:
Masfara, L. O. M., Weemstra, C., Cullison, T., (2021), "Efficient Probabilistic Inversion of Induced Earthquake Parameters in 3D Heterogeneous Media", European Association of Geoscientists & Engineers, 2021, 1: pg: 1--5, . Cited by:
Zhao, Y., Guo, Z., Wang, K., Yang, Y. J., (2021), "A Large Magma Reservoir beneath the Tengchong Volcano Revealed by Ambient Noise Adjoint Tomography", Journal of Geophysical Research: Solid Earth, 126: pg: 2021, . Cited by:
Peter, D., Komatitsch, D., Luo, Y., Martin, R., Le Goff, N., Casarotti, E., Le Loher, P., Magnoni, F., Liu, Q., Blitz, C., Nissen-Meyer, T., Basini, P., Tromp, J., (2011), "Forward and adjoint simulations of seismic wave propagation on fully unstructured hexahedral meshes: SPECFEM3D Version 2.0 'Sesame'", Geophysical Journal International, 186, 2: pg: 721--739, (DOI: 10.1111/j.1365-246X.2011.05044.x). Cited by:
Stich, D., Danecek, P., Morelli, A., Tromp, J., (2009), "Imaging lateral heterogeneity in the northern Apennines from time reversal of reflected surface waves", Geophysical Journal International, 177, 2: pg: 543--554, (DOI: 10.1111/j.1365-246X.2008.04044.x). Cited by:
Chen, M., Tromp, J., (2007), "Theoretical and numerical investigations of global and regional seismic wave propagation in weakly anisotropic earth models", Geophysical Journal International, 168, 3: pg: 1130--1152, (DOI: 10.1111/j.1365-246X.2006.03218.x). Cited by:
Göddeke, D., Komatitsch, D., Geveler, M., Ribbrock, D., Rajovic, N., Puzovic, N., Ramirez, A., (2013), "Energy efficiency vs. performance of the numerical solution of PDEs: An application study on a low-power ARM-based cluster", Journal of Computational Physics, 237: pg: 132--150, (DOI: 10.1016/j.jcp.2012.11.031). Cited by:
Schumacher, F., Friederich, W., (2016), "ASKI: A modular toolbox for scattering-integral-based seismic full waveform inversion and sensitivity analysis utilizing external forward codes", SoftwareX, 5: pg: 252--259, (DOI: 10.1016/j.softx.2016.10.005). Cited by:
Béjina, F., Bystricky, M., Tercé, N., Whitaker, M. L., Chen, H., (2021), "Equation of state and sound wave velocities of fayalite at high pressures and temperatures: implications for the seismic properties of the martian mantle", European Journal of Mineralogy, 33, 4: pg: 519--535, (DOI: 10.5194/ejm-33-519-2021). Cited by:
Krasnoshchekov, D. N., Ovtchinnikov, V. M., Usoltseva, O. A., (2021), "Mechanical Q-Factor in the Earth's Upper Inner Core Inferred from PKiKP Coda Waves", Izvestiya, Physics of the Solid Earth, 57, 5: pg: 593--604, (DOI: 10.1134/S1069351321050141). Cited by:
Nissen-Meyer, T., Fournier, A., Driel, M., Stähler, S., Hempel, S., Ampuero, J-P, Chaljub, E., Colombi, A., Dahlen, F. A., Hosseini, K., Komatitsch, D., Nolet, G., Tromp, J., (2013), "AxiSEM v1.0 [software]", Computational Infrastructure for Geodynamics: (DOI: NoDOI). Cited by:
Nissen-Meyer, T., Fournier, A., Driel, M., Stähler, S., Hempel, S., Hosseini, K., Ampuero, J-P, Chaljub, E., Colombi, A., Dahlen, F. A., Komatitsch, D., Nolet, G., Tromp, J., (2016), "AxiSEM v1.3 [software]", Computational Infrastructure for Geodynamics: (DOI: NoDOI). Cited by:
Nissen-Meyer, T., Fournier, A., Driel, M., Stähler, S., Hempel, S., Hosseini, K., Ampuero, J-P, Chaljub, E., Colombi, A., Dahlen, F. A., Komatitsch, D., Nolet, G., Tromp, J., (2016), "AxiSEM v1.4 [software]", Computational Infrastructure for Geodynamics: (DOI: NoDOI). Cited by:
Nissen-Meyer, T., Fournier, A., Driel, M., Stähler, S., Hempel, S., Hosseini, K., Ampuero, J-P, Chaljub, E., Colombi, A., Dahlen, F. A., Komatitsch, D., Nolet, G., Tromp, J., (2014), "AxiSEM v1.1 [software]", Computational Infrastructure for Geodynamics: (DOI: NoDOI). Cited by:
Adam, J. M-C, Romanowicz, B., (2015), "Global scale observations of scattered energy near the inner-core boundary: Seismic constraints on the base of the outer-core", Physics of the Earth and Planetary Interiors, 245: pg: 103--116, (DOI: 10.1016/j.pepi.2015.06.005). Cited by:
Bharadwaj, P., Nissen-Meyer, T., Schuster, G., Mai, P. M., (2014), "Enhancing core-diffracted arrivals by supervirtual interferometry", Geophysical Journal International, 196, 2: pg: 1177--1188, (DOI: 10.1093/gji/ggt452). Cited by:
Böse, M., Clinton, J. F., Ceylan, S., Euchner, F., Driel, M., Khan, A., Giardini, D., Lognonné, P., Banerdt, W. B., (2016), "A Probabilistic Framework for Single-Station Location of Seismicity on Earth and Mars", Physics of the Earth and Planetary Interiors, 262: pg: 48--65, (DOI: 10.1016/j.pepi.2016.11.003). Cited by:
Böse, M., Giardini, D., Stähler, S., Ceylan, S., Clinton, J. F., Driel, M., Khan, A., Euchner, F., Lognonné, P., Banerdt, W. B., (2018), "Magnitude Scales for Marsquakes", Bulletin of the Seismological Society of America, 108, 5A: pg: 2764--2777, (DOI: 10.1785/0120180037). Cited by:
Boue, P., Poli, P., Campillo, M., Pedersen, H., Briand, X., Roux, P., (2013), "Teleseismic correlations of ambient seismic noise for deep global imaging of the Earth", Geophysical Journal International, 194, 2: pg: 844--848, (DOI: 10.1093/gji/ggt160). Cited by:
Boué, P., Poli, P., Campillo, M., Roux, P., (2014), "Reverberations, coda waves and ambient noise: Correlations at the global scale and retrieval of the deep phases", Earth and Planetary Science Letters, 391: pg: 137--145, (DOI: 10.1016/j.epsl.2014.01.047). Cited by:
Burky, A. L., Irving, J. C. E., Simons, F. J., (2020), "Mantle Transition Zone Receiver Functions for Bermuda: Automation, Quality Control, and Interpretation", Journal of Geophysical Research: Solid Earth, n/a, n/a: pg: 2020, . Cited by:
Clinton, J., Giardini, D., Böse, M., Ceylan, S., Driel, M., Euchner, F., Garcia, R. F., Kedar, S., Khan, A., Stähler, S. C., Banerdt, B., Lognonne, P., Beucler, E., Daubar, I., Drilleau, M., Golombek, M., Kawamura, T., Knapmeyer, M., Knapmeyer-Endrun, B., Mimoun, D., Mocquet, A., Panning, M., Perrin, C., Teanby, N. A., (2018), "The Marsquake Service: Securing Daily Analysis of SEIS Data and Building the Martian Seismicity Catalogue for InSight", Space Science Reviews, 214, 8: pg: 133, (DOI: 10.1007/s11214-018-0567-5). Cited by:
Clinton, J. F., Giardini, D., Lognonné, P., Banerdt, B., Driel, M., Drilleau, M., Murdoch, N., Panning, M., Garcia, R., Mimoun, D., Golombek, M., Tromp, J., Weber, R., Böse, M., Ceylan, S., Daubar, I., Kenda, B., Khan, A., Perrin, L., Spiga, A., (2017), "Preparing for InSight: An Invitation to Participate in a Blind Test for Martian Seismicity", Seismological Research Letters, GeoScienceWorld, 88, 5: pg: 1290--1302, (DOI: 10.1785/0220170094). Cited by:
Colombi, A., Nissen-Meyer, T., Boschi, L., Giardini, D., (2014), "Seismic waveform inversion for core-mantle boundary topography", Geophysical Journal International, 198, 1: pg: 55--71, (DOI: 10.1093/gji/ggu112). Cited by:
Colombi, A., Nissen-Meyer, T., Boschi, L., Giardini, D., (2012), "Seismic waveform sensitivity to global boundary topography: \textitSensitivity to global boundary topography", Geophysical Journal International, 191, 2: pg: 832--848, (DOI: 10.1111/j.1365-246X.2012.05660.x). Cited by:
BibTex | EndNote|Resources cited:[1][2]
Daubar, I., Lognonné, P., Teanby, N. A., Miljkovic, K., Stevanovic, J, Vaubaillon, J., Kenda, B., Kawamura, T., Clinton, J., Lucas, A., Drilleau, M., Yana, C., Collins, G. S., Banfield, D., Golombek, M., Kedar, S., Schmerr, N., Garcia, R., Rodriguez, S., Gudkova, T., May, S., Banks, M., Maki, J., Sansom, E., Karakostas, F., Panning, M., Fuji, N., Wookey, J., Driel, M., Lemmon, M., Ansan, V., Böse, M., Stähler, S., Kanamori, H., Richardson, J., Smrekar, S., Banerdt, W. B., (2018), "Impact-Seismic Investigations of the InSight Mission", Space Science Reviews, 214, 8: pg: 132, (DOI: 10.1007/s11214-018-0562-x). Cited by:
Fernando, B., Leng, K., Nissen-Meyer, T., (2020), "Oceanic high-frequency global seismic wave propagation with realistic bathymetry", Geophysical Journal International, : (DOI: 10.1093/gji/ggaa248). Cited by:
Frost, D. A., Romanowicz, B., Roecker, S., (2020), "Upper mantle slab under Alaska: contribution to anomalous core-phase observations on south-Sandwich to Alaska paths", Physics of the Earth and Planetary Interiors, 299: pg: 106427, (DOI: 10.1016/j.pepi.2020.106427). Cited by:
Haindl, Claudia, Leng, Kuangdai, Nissen-Meyer, Tarje, (2021), "A 3D Complexity-Adaptive Approach to Exploit Sparsity in Elastic Wave Propagation", Geophysics, Society of Exploration Geophysicists: pg: 1--60, . Cited by:
Haugland, S. M., Ritsema, J., Keken, P. E. van, Nissen-Meyer, T., (2017), "Analysis of PKP scattering using mantle mixing simulations and axisymmetric 3D waveforms", Physics of the Earth and Planetary Interiors, 276: pg: 226--233, . Cited by:
Hosseini, K., Sigloch, K., (2015), "Multifrequency measurements of core-diffracted\textitPwaves (Pdiff) for global waveform tomography", Geophysical Journal International, 203, 1: pg: 506--521, (DOI: 10.1093/gji/ggv298). Cited by:
Hosseini, Kasra, Sigloch, (2019), "Global mantle structure from multi-frequency tomography using P, PP and P-diffracted waves", Geophysical Journal International, 220, 1: pg: 96--141, (DOI: 10.1093/gji/ggz394). Cited by:
Hutko, A. R., Bahavar, M., Trabant, C., Weekly, R. T., Fossen, M. V., Ahern, T., (2017), "Data Products at the IRIS-DMC: Growth and Usage", Seismological Research Letters, 88, 3: pg: 892--903, (DOI: 10.1785/0220160190). Cited by:
Jenkins, J., Mousavi, S., Li, Z., Cottaar, S., (2021), "A high-resolution map of Hawaiian ULVZ morphology from ScS phases", Earth and Planetary Science Letters, 563: pg: 116885, . Cited by:
Kanamori, H., Rivera, L., Lambotte, S., (2019), "Evidence for a large strike-slip component during the 1960 Chilean earthquake", Geophysical Journal International, 218, 1: pg: 1--32, (DOI: 10.1093/gji/ggz113). Cited by:
Kennett, B. L. N., Pham, T-S, (2018), "Evolution of the correlation wavefield extracted from seismic event coda", Physics of the Earth and Planetary Interiors, 282: pg: 100--109, (DOI: 10.1016/j.pepi.2018.07.004). Cited by:
Kennett, B. L. N., Pham, T-S, (2018), "The nature of Earth's correlation wavefield: late coda of large earthquakes", Proceedings of the Royal Society A: Mathematical, Physical and Engineering Science, 474, 2214: pg: 20180082, (DOI: 10.1098/rspa.2018.0082). Cited by:
Knapmeyer-Endrun, B., Ceylan, S., Driel, M., (2018), "Crustal S-Wave Velocity from Apparent Incidence Angles: A Case Study in Preparation for InSight", Space Science Reviews, 214, 5: pg: 83, (DOI: 10.1007/s11214-018-0510-9). Cited by:
Krischer, L., Aiman, Y. A., Bartholomaus, T., Donner, S., Driel, M. van, Duru, K., Garina, K., Gessele, K., Gunawan, T., Hable, S., Hadziioannou, Céline, Koymans, M., Leeman, J., Lindner, F., Ling, A., Megies, T., Nunn, C., Rijal, A., Salvermoser, J., Soza, S. T., Tape, C., Taufiqurrahman, T., Vargas, D., Wassermann, J., Wölfl, F., Williams, M., Wollherr, S., Igel, H., (2018), "seismo-live: An Educational Online Library of Jupyter Notebooks for Seismology", Seismological Research Letters, 89, 6: pg: 2413--2419, (DOI: 10.1785/0220180167). Cited by:
Krischer, L., Hutko, A. R., Driel, M., Stähler, S., Bahavar, M., Trabant, C., Nissen-Meyer, T., (2017), "On-Demand Custom Broadband Synthetic Seismograms", Seismological Research Letters, GeoScienceWorld, 88, 4: pg: 1127--1140, (DOI: 10.1785/0220160210). Cited by:
Leng, K., Nissen-Meyer, T., Driel, M., (2016), "Efficient global wave propagation adapted to 3-D structural complexity: a pseudo-spectral/spectral-element approach", Geophysical Journal International, 207, 3: pg: 1700--1721, (DOI: 10.1093/gji/ggw363). Cited by:
BibTex | EndNote|Resources cited:[1][2]
Leng, K., Nissen-Meyer, T., Driel, M., Hosseini, K., Al-Attar, D., (2019), "AxiSEM3D: broadband seismic wavefields in 3-D global Earth models with undulating discontinuities", Geophysical Journal International, 217, 3: pg: 2125--2146, (DOI: 10.1093/gji/ggz092). Cited by:
Li, L., Boué, P., Campillo, M., (2019), "Observation and explanation of spurious seismic signals emerging in teleseismic noise correlations", Solid Earth Discussions, 2019: pg: 1--20, (DOI: 10.5194/se-2019-118). Cited by:
Long, X., Kawakatsu, H., Takeuchi, N., (2018), "A Sharp Structural Boundary in Lowermost Mantle Beneath Alaska Detected by Core Phase Differential Travel Times for the Anomalous South Sandwich Islands to Alaska Path", Geophysical Research Letters, Wiley-Blackwell, 45, 1: pg: 176--184, (DOI: 10.1002/2017gl075685). Cited by:
Ma, X., Sun, X., Thomas, C., (2019), "Localized ultra-low velocity zones at the eastern boundary of Pacific LLSVP", Earth and Planetary Science Letters, 507: pg: 40--49, (DOI: 10.1016/j.epsl.2018.11.037). Cited by:
Ma, X., Thomas, C., (2020), "Small-scale scattering heterogeneities in the lowermost mantle from a global analysis of PKP precursors", Journal of Geophysical Research: Solid Earth, : (DOI: 10.1029/2019JB018736). Cited by:
Murdoch, N., Hempel, S., Pou, L., Cadu, A., Garcia, R. F., Mimoun, D., Margerin, L., Karatekin, O., (2017), "Probing the internal structure of the asteriod Didymoon with a passive seismic investigation", Planetary and Space Science, 144: pg: 89--105, (DOI: 10.1016/j.pss.2017.05.005). Cited by:
Nissen-Meyer, T., Dahlen, F. A., Fournier, A., (2007), "Spherical-earth Fréchet sensitivity kernels", Geophysical Journal International, 168, 3: pg: 1051--1066, (DOI: 10.1111/j.1365-246X.2006.03123.x). Cited by:
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