[57] Akinremi, S., M. van der Meijde, C. Thomas, J.C. Afonso, E. Ruigrok and I. Fadel, 2024, waveform fitting of receiver functions for enhanced retrieval of crustal structure in the presence of sediments, Journal of Geophysical Research: Solid Earth, 129, e2023JB028393, https://doi.org/10.1029/2023JB028393.
[56] Fokker, E., E. Ruigrok and J. Trampert, 2024, On the temperature sensitivity of near-surface seismic wave speeds: application to the Groningen region, the Netherlands, Geophysical Journal International, 237, 1129-1141, https://doi.org/10.1093/gji/ggae102.
[55] Spetzler, J., E. Ruigrok and D. Bouwman, 2024, Hypocenter uncertainty analysis of induced and tectonic earthquakes in the Netherlands, Journal of Seismology, published online, https://doi.org/10.1007/s10950-024-10205-8.
[54] Fokker, E., E. Ruigrok, R. Hawkins and J. Trampert, 2023, 4D physics based pore pressure monitoring using passive image interferometry, Geophysical Research Letters, 50, e2022GL101254, https://doi.org/10.1029/2022GL101254.
[53] Ntinalexis, M., P.P. Kruiver, J.J. Bommer, E. Ruigrok, A. Rodriguez-Marek, B. Edwards, R. Pinho, J. Spetzler, E. Obando Hernandez, M. Pefkos, M. Bahrampouri, E.P. van Onselen, B. Dost, and J. van Elk, 2023, A database of ground motion recordings, site profiles, and amplification factors from the Groningen gas field in the Netherlands. Earthquake Spectra, 39, 687-701, https://doi.org/10.1177/87552930221140926.
[52] Bommer, J.J., P.J. Stafford, E. Ruigrok, A. Rodriguez-Marek, M. Ntinalexis, P.P. Kruiver, B. Edwards, B. Dost and J. van Elk, 2022, Ground-motion prediction models for induced earthquakes in the Groningen gas field, the Netherlands. Journal of Seismology, 6, 1157-1184, https://doi.org/10.1007/s10950-022-10120-w.
[51] van Ginkel, J., E. Ruigrok, R. Wentinck and R. Herber, 2022, Amplification behaviour of compressional waves in unconsolidated sediments. Frontiers in Earth Science, 10, 812658, https://doi.org/10.3389/feart.2022.812658.
[50] Ruigrok, E., A. Rodriguez-Marek, B. Edwards, P.P. Kruiver, B. Dost, and J.J. Bommer, 2022, Derivation of a near-surface damping model for the Groningen gas field. Geophysical Journal International, 230(2), 776-795, https://doi.org/10.1093/gji/ggac069.
[49] Paulssen, H., T. Micallef, D. Bouwman, E. Ruigrok, M. Herman, I Fadel, M. van der Meijde, M. Kwadiba, J. Maritinkole and O.Ntibinyane, 2022, Rifting of the Kalahari Craton through Botswana? New seismic evidence. Journal of Geophysical Research: Solid Earth, e2021JB023524, https://doi.org/10.1029/2021JB023524.
[48] van Ginkel, J., E. Ruigrok, J. Stafleu and R. Herber, 2022, Development of a seismic site-response zonation map for the Netherlands. Nat. Hazards Earth Syst. Sci., 22, 41–63, https://doi.org/10.5194/nhess-22-41-2022.
[47] Koymans, M. R., J. Domingo-Ballesta, E. Ruigrok, R. Sleeman, L. Trani and L. Evers, 2021, Performance assessment of geophysical instrumentation through the automated analysis of power spectral density estimates. Earth and Space Science, 8(9), https://doi.org/10.1029/2021EA001675.
[46] Fokker E, E. Ruigrok, R. Hawkins and J. Trampert, 2021, Physics-based relationship for pore pressure and vertical stress monitoring using seismic velocity variations. Remote Sensing. 2021; 13(14):2684. https://doi.org/10.3390/rs13142684.
[45] Bianchi, I, E. Ruigrok, A. Obermann and E. Kissling, 2021, Moho topography beneath the European Eastern Alps by global-phase seismic interferometry. Solid Earth, 12, 1185-1196, https://doi.org/10.5194/se-12-1185-2021.
[44] Obermann, A., E. Ruigrok, I. Bianchi and G. Hetenyi, 2021, Constraining the Moho Depth Below Bhutan With Global-Phase Seismic Interferometry. Front. Earth Sci., https://doi.org/10.3389/feart.2021.658146.
[43] van Ginkel, J., E. Ruigrok and R. Herber, 2020, Using horizontal-to-vertical spectral ratios to construct shear-wave velocity profiles. Solid Earth, 11(6), 2015-2030, https://doi.org/10.5194/se-11-2015-2020.
[42] Dost, B., A. van Stiphout, D. Kühn, M. Kortekaas, E. Ruigrok and S. Heimann, 2020, Probabilistic moment tensor inversion for hydrocarbon-induced seismicity in the Groningen gas field, the Netherlands, part 2: Application. Bulletin of the Seismological Society of America, 110(5), 2112-2123, https://doi.org/10.1785/0120200076.
[41] Kühn, D., S. Heimann, M.P. Isken, E. Ruigrok and B. Dost, 2020, Probabilistic moment tensor inversion for hydrocarbon-induced seismicity in the Groningen gas field, the Netherlands, part 1: Testing. Bulletin of the Seismological Society of America, 110(5), 2095-2111, https://doi.org/10.1785/0120200099.
[40] Nishitsuji, Y., E. Ruigrok and D. Draganov, 2020, Azimuthal Anisotropy of the Megaregolith at the Apollo 14 Landing Site. Journal of Geophysical Research: Planets, 125(5), https://doi.org/10.1029/2019JE006126.
[39] Martins, J.E., C. Weemstra, E. Ruigrok, A. Verdel, P. Jousset and G.P. Hersir, 2020, 3D S-wave velocity imaging of Reykjanes Peninsula high-enthalpy geothermal fields with ambient-noise tomography. Journal of Volcanology and Geothermal Research, 391, https://doi.org/10.1016/j.jvolgeores.2019.106685.
[38] Ntinalexis, M., J.J. Bommer, E. Ruigrok, B. Edwards, R. Pinho, B. Dost, A.A. Correira, J. Uilenreef, P.J. Stafford and J. van Elk, 2019, Ground-motion networks in the Groningen field: usability and consistency of surface recordings. Journal of Seismology, 23, 1233-1253, https://doi.org/0.1007/s10950-019-09870-x.
[37] Van Ginkel, J., E. Ruigrok and R. Herber, 2019, Assessing soil amplifications in Groningen, the Netherlands. First Break, 37(10), 33-38, https://doi.org/10.3997/1365-2397.2019026.
[36] Ruigrok, E., J. Domingo-Ballesta, G.-J. van den Hazel, B. Dost and L. Evers, 2019, Groningen explosion database. First Break, 37(8), 37-41, https://doi.org/10.3997/1365-2397.n0053.
[35] van IJsseldijk, J., E. Ruigrok, A. Verdel and C. Weemstra, 2019, Shallow crustal imaging using distant, high-magnitude earthquakes. Geophysical Journal International, 219(2), 1082-1091, https://doi.org/10.1093/gji/ggz343.
[34] Fokker, E. B. and E.N. Ruigrok, 2019, Quality parameters for passive image interferometry tested at the Groningen network. Geophysical Journal International, 218(2), 1367-1378, https://doi.org/10.1093/gji/ggz228.
[33] Casas, J.A., D. Draganov, G.A. Badi, M.C. Manassero, V.H. Olivera Craig, L. Franco Marin, M. Gomez and E. Ruigrok, 2019, Seismic interferometry applied to local fracture seismicity recorded at Planchón-Peteroa Volcanic Complex, Argentina-Chile, Journal of South American Earth Sciences, 92, 134-144, https://doi.org/10.1016/j.jsames.2019.03.012.
[32] Martins, J. E., E. Ruigrok, D. Draganov, A. Hooper, R.F. Hanssen, R.S. White and H.Soosalu, 2019, Imaging Torfajökull's magmatic plumbing system with seismic interferometry and phase velocity surface wave tomography. Journal of Geophysical Research: Solid Earth, 124(3), 2920-2940, https://doi.org/10.1029/2018JB016002.
[31] Cielesta, S., B. Orlecka-Sikora, M. Staszek, P. Urban, D. Olszewska, E. Ruigrok, S. Toon, M. Picozzi, G. Kwiatek, S. Cesca, J.A. Lopez Comino, C. Isherwood, N. Montcoudiol and J. Jaroslawski, 2019, SHEER “smart” database. Acta Geophysica 67(1), 291-297, https://doi.org/10.1007/s11600-018-0205-3.
[30] Gibbons, S., S. Naesholm, E. Ruigrok and T. Kvaerna, 2018, Improving slowness estimate stability and visualization using limited sensor pair correlation on seismic arrays, Geophysical Journal International, 213(1), 447-460, https://doi.org/10.1093/gji/ggx550.
[29] Noorlandt, R., P. Kruiver, M. de Kleine, M. Karaoulis, G. de Lange, A. di Matteo, J. von Ketelhodt, E. Ruigrok, B. Edwards, A. Rodriguez-Marek, J. Bommer, J. van Elk and D. Doornhof, 2018, Characterisation of Ground-Motion Recording Stations in the Groningen Gas Field, Journal of Seismology, 22, 602-623, https://doi.org/10.1007/s10950-017-9725-6.
[28] Dost, B., E. Ruigrok and J. Spetzler, 2017, Development of probabilistic seismic hazard assessment for the Groningen gas field, Netherlands Journal of Geosciences, 96(5), s235-s245, https://doi.org/10.1017/njg.2017.20.
[27] Jagt, L., E. Ruigrok and H. Paulssen, 2017, Relocation of clustered earthquakes in the Groningen gas field, Netherlands Journal of Geosciences, 96(5), s163-s173, https://doi.org/10.1017/njg.2017.12.
[26] Hofman, L.J., E. Ruigrok, B. Dost and H. Paulssen, 2017, A shallow velocity model for the Groningen area in the Netherlands, Journal of Geophysical Research: Solid Earth, 122, 8035-8050, https://doi.org/10.1002/2017JB014419.
[25] Ruigrok, E., S. Gibbons and K. Wapenaar, 2017, Cross-correlation beamforming, Journal of Seismology, 21, 495-508, https://doi.org/10.1007/s10950-016-9612-6.
[24] Weemstra, C., D. Draganov, E. Ruigrok, J. Hunziker, M. Gomez and K. Wapenaar, 2017, Application of seismic interferometry by multidimensional deconvolution to ambient seismic noise recorded in Malargüe, Argentina, Geophysical Journal International, 208, 693-714, https://doi.org/10.1093/gji/ggw425.
[23] Snieder, R., C. Sens-Schönfelder and E. Ruigrok, 2016, Elastic-wave propagation and the Coriolis force. Physics Today, 69(12), 90-91, https://doi.org/10.1063/PT.3.3408.
[22] Nishitsuji, Y., E. Ruigrok, M. Gomez, K. Wapenaar and D. Draganov, 2016, Reflection imaging of aseismic zones of the Nazca slab by global-phase seismic interferometry, Interpretation, 4(3), SJ1-SJ16, https://doi.org/10.1190/INT-2015-0225.1.
[21] Snieder, R., C. Sens-Schönfelder, E. Ruigrok, and K. Shiomi, 2016, Seismic shear waves as Foucault pendulum. Geophysical Research Letters, 46(3), 2576-2581, https://doi.org/10.1002/2015GL067598.
[20] Draganov, D. and E. Ruigrok, 2015, Passive seismic interferometry for subsurface imaging, Encyclopedia of Earthquake Engineering, https://doi.org/10.1007/978-3-642-36197-5_378-1, article.
[19] van Dalen, K., D. Mikesell, E. Ruigrok, and K. Wapenaar, 2015, Retrieving surface waves from ambient seismic noise using seismic interferometry by multidimensional deconvolution, Journal of Geophysical Research - Solid Earth, 120, https://doi.org/10.1002/2014JB011262.
[18] Draganov, D., E. Ruigrok, R. Ghose, D. Mikesell and K. van Wijk, 2015, Quality-factor and reflection-coefficient estimation using surface-wave ghost reflections from subvertical structures, Journal of Applied Geophysics, 112, 206-214, https://doi.org/10.1016/j.jappgeo.2014.11.019.
[17] Nishitsuji, Y., E. Ruigrok, M. Gomez and D. Draganov, 2014, Global-phase H/V spectral ratio for imaging the basin in the Malargüe region, Argentina. Seismological Research Letters, 85, 1004-1011, https://doi.org/10.1785/0220140054.
[16] Frank, J., E. Ruigrok and K. Wapenaar, 2014, Shear wave seismic interferometry for lithospheric imaging: Application to southern Mexico, Journal of Geophysical Research - Solid Earth, 119, 5713-5726, https://doi.org/10.1002/2013JB010692, article.
[15] Ruigrok, E., 2014, Receiver-pair seismic interferometry applied to body-wave USArray data, Geophysical Journal International, 198, 895-905, https://doi.org/10.1093/gji/ggu168, article.
[14] Fricke, J.T., N. El Allouche, D.G. Simons, E. Ruigrok, K. Wapenaar and L.G. Evers, 2013, Infrasonic interferometry of stratospherically refracted microbaroms – a numerical study, J. Acoust. Soc. Am., 134, 2660-2668, https://doi.org/10.1121/1.4819117.
[13] Draganov, D, R. Ghose, K. Heller and E. Ruigrok, 2013, Monitoring changes in velocity and Q using non-physical arrivals in seismic interferometry, Geophysical Journal International, 192, 669-709, https://doi.org/10.1093/gji/ggs037.
[12] Mikesell, D., K. van Wijk, E. Ruigrok, A. Lamb and T. Blum, 2012, A modified delay-time method for statics estimation with the virtual refractor, Geophysics, 77, A29-A33, https://doi.org/10.1190/geo2012-0111.1.
[11] Ruigrok, E., D. Draganov, M. Gómez, J. Ruzzante, D. Torres, I. Lópes Pumarega, N. Barbero, A. Ramires, A.R. Castaño Gañan, K. van Wijk and K. Wapenaar, 2012, Malargüe seismic array: design and deployment of the temporary array, The European Physical Journal Plus, 127(10): 126, https://doi.org/10.1140/epjp/i2012-12126-7, article.
[10] Ruigrok, E., X. Campman and K. Wapenaar, 2012, Basin delineation with a 40-hour passive seismic record, Bulletin of the Seismological Society of America, 102, 2165-2176, https://doi.org/10.1785/0120110242, article.
[9] Ruigrok, E. and K. Wapenaar, 2012, Global-phase seismic interferometry unveils P-wave reflectivity below the Himalayas and Tibet, Geophysical Research Letters, Geophysical Research Letters, 39, L11303, https://doi.org/10.1029/2012GL051672, article, auxiliary material.
[8] Ruigrok, E., T.D. Mikesell and K. van Wijk, 2012, Scanning for velocity anomalies in the crust and mantle with diffractions from the core-mantle boundary, Geophysical Research Letters, 38, L11301, https://doi.org/10.1029/2012GL051443, article, auxiliary material.
[7] Ruigrok, E., X. Campman and K. Wapenaar, 2011, Extraction of P-wave reflections from microseisms, C. R. Geoscience, 343, 512-525, https://doi.org/10.1016/j.crte.2011.02.006, article.
[6] Wapenaar, K., J. van der Neut, E. Ruigrok, D. Draganov, J. Hunziker, E. Slob, J. Thorbecke and R. Snieder, 2011, Seismic interferometry by crosscorrelation and by multi-dimensional deconvolution: a systematic comparison, Geophysical Journal International, 185, 1335-1364, https://doi.org/10.1111/j.1365-246X.2011.05007.x.
[5] Wapenaar, K., E. Ruigrok, J. van der Neut and D. Draganov, 2011, Improved surface-wave retrieval from ambient seismic noise by multi-dimensional deconvolution, Geophysical Research Letters, 38, L01313, https://doi.org/10.1029/2010GL045523.
[4] Ruigrok, E., X. Campman, D. Draganov and K. Wapenaar, 2010, High-resolution lithospheric imaging with seismic interferometry, Geophysical Journal International, 183, 339-357, https://doi.org/10.1111/j.1365-246X.2010.04724.x, article.
[3] Draganov, D., R. Ghose, E. Ruigrok, J. Thorbecke and K. Wapenaar, 2010, Seismic interferometry, intrinsic losses and Q-estimation, Geophysical prospecting, 58, 361-373, https://doi.org/10.1111/j.1365-2478.2009.00828.x.
[2] Wapenaar, K, J. van der Neut and E. Ruigrok, 2008, Passive seismic interferometry by multidimensional deconvolution, Geophysics, 73, A51-A56, https://doi.org/10.1190/1.2976118.
[1] Ruigrok, E, D. Draganov and K. Wapenaar, 2008, Global-scale seismic interferometry: theory and numerical examples, Geophysical Prospecting, 56, 395-417, https://doi.org/10.1111/j.1365-2478.2008.00697.x, article.
Thesis
Ruigrok, E., 2012, Body-wave seismic interferometry applied to earthquake- and storm-induced wavefields, Delft University of Technology, BoxPress, thesis.