Three‐dimensional, prestack, plane wave migration of teleseismic P‐to‐S converted phases: 1. Theory C Poppeliers, GL Pavlis Journal of Geophysical Research: Solid Earth 108 (B2), 2003 | 91 | 2003 |
Three‐dimensional, prestack, plane wave migration of teleseismic P‐to‐S converted phases: 2. Stacking multiple events C Poppeliers, GL Pavlis Journal of Geophysical Research: Solid Earth 108 (B5), 2003 | 52 | 2003 |
Estimating vertical stochastic scale parameters from seismic reflection data: deconvolution with non-white reflectivity C Poppeliers Geophysical Journal International 168 (2), 769-778, 2007 | 28 | 2007 |
Estimation of vertical stochastic scale parameters in the Earth's crystalline crust from seismic reflection data C Poppeliers, A Levander Geophysical research letters 31 (13), 2004 | 25 | 2004 |
The effects of measurement uncertainties in seismic-wave gradiometry C Poppeliers, EV Evans Bulletin of the Seismological Society of America 105 (6), 3143-3155, 2015 | 23 | 2015 |
Three‐dimensional seismic‐wave gradiometry for scalar waves C Poppeliers, P Punoševac, T Bell Bulletin of the Seismological Society of America 103 (4), 2151-2160, 2013 | 22 | 2013 |
The seismic response of a steep slope: High-resolution observations with a dense, three-component seismic array C Poppeliers, GL Pavlis Bulletin of the Seismological Society of America 92 (8), 3102-3115, 2002 | 21 | 2002 |
Seismic wave gradiometry using the wavelet transform: Application to the analysis of complex surface waves recorded at the Glendora Array, Sullivan, Indiana, USA C Poppeliers Bulletin of the Seismological Society of America 100 (3), 1211-1224, 2010 | 20 | 2010 |
Seismic characterization of the Nevada National Security Site using joint body wave, surface wave, and gravity inversion L Preston, C Poppeliers, DJ Schodt Bulletin of the Seismological Society of America 110 (1), 110-126, 2020 | 17 | 2020 |
Multiwavelet seismic-wave gradiometry C Poppeliers Bulletin of the Seismological Society of America 101 (5), 2108-2121, 2011 | 17 | 2011 |
High‐frequency seismic noise generated from breaking shallow water ocean waves and the link to time‐variable sea states C Poppeliers, D Mallinson Geophysical Research Letters 42 (20), 8563-8569, 2015 | 14 | 2015 |
The effects of atmospheric models on the estimation of infrasonic source functions at the Source Physics Experiment C Poppeliers, LB Wheeler, L Preston Bulletin of the Seismological Society of America 110 (3), 998-1010, 2020 | 13 | 2020 |
The relative importance of assumed infrasound source terms and effects of atmospheric models on the linear inversion of infrasound time series at the source physics experiment C Poppeliers, KA Aur, L Preston Bulletin of the Seismological Society of America 109 (1), 463-475, 2019 | 13 | 2019 |
Three‐dimensional wave gradiometry for polarized seismic waves C Poppeliers, P Punoševac Bulletin of the Seismological Society of America 103 (4), 2161-2172, 2013 | 13 | 2013 |
The effects of earth model uncertainty on the inversion of seismic data for seismic source functions C Poppeliers, L Preston Geophysical Journal International 224 (1), 100-120, 2021 | 11 | 2021 |
Azimuthally Dependent Seismic‐Wave Coherence at the Source Physics Experiment Large‐ Array A Darrh, C Poppeliers, L Preston Bulletin of the Seismological Society of America 109 (5), 1935-1947, 2019 | 7 | 2019 |
Inversion of infrasound time series for seismoacoustic source parameters produced by a buried chemical explosion at the source physics experiment phase II: Dry alluvium geology EM Berg, C Poppeliers Bulletin of the Seismological Society of America 112 (4), 2216-2230, 2022 | 6 | 2022 |
The Use of Multiwavelets to Quantify the Uncertainty of Single‐Station Surface‐Wave Dispersion Estimates C Poppeliers, L Preston Seismological Research Letters 90 (2A), 754-764, 2019 | 6 | 2019 |
Prestack planewave migration of teleseismic P-to-S converted phases CJ Poppeliers Indiana University, 2001 | 5 | 2001 |
Quantitative assessment of Distributed Acoustic Sensing at the Source Physics Experiment (Phase II) RW Porritt, RE Abbott, C Poppeliers Sandia National Lab.(SNL-NM), Albuquerque, NM (United States), 2022 | 4 | 2022 |