Thorne Lay
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American seismologist
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Thorne Layearth-sciences Degrees
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Earth Sciences
Thorne Lay's Degrees
- Bachelors Geophysics University of California, Berkeley
Why Is Thorne Lay Influential?
(Suggest an Edit or Addition)According to Wikipedia, Thorne Lay is an American seismologist. He was born in Casper, Wyoming in 1956, and raised in El Paso, Texas. He is a professor of earth and planetary sciences at the University of California, Santa Cruz.
Thorne Lay's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Modern Global Seismology (1995) (1283)
- The Great Sumatra-Andaman Earthquake of 26 December 2004 (2005) (1034)
- Earth and Planetary Science Letters (780)
- Rupture Process of the 2004 Sumatra-Andaman Earthquake (2005) (662)
- Depth‐varying rupture properties of subduction zone megathrust faults (2011) (444)
- Core–mantle boundary heat flow (2008) (428)
- The core–mantle boundary layer and deep Earth dynamics (1998) (396)
- The core-mantle boundary region (1995) (337)
- A lower mantle S-wave triplication and the shear velocity structure of D" (1983) (322)
- The asperity model and the nature of large subduction zone earthquakes. (1982) (314)
- Possible large near-trench slip during the 2011 Mw 9.0 off the Pacific coast of Tohoku Earthquake (2011) (285)
- A Post-Perovskite Lens and D'' Heat Flux Beneath the Central Pacific (2006) (245)
- Rigidity variations with depth along interplate megathrust faults in subduction zones (1999) (235)
- A rupture model of the 2011 off the Pacific coast of Tohoku Earthquake (2011) (233)
- Partial melting in a thermo-chemical boundary layer at the base of the mantle (2004) (202)
- Frequency-dependent rupture process of the 2011 Mw 9.0 Tohoku Earthquake: Comparison of short-period P wave backprojection images and broadband seismic rupture models (2011) (192)
- Analysis of Seismic Body Waves Excited by the Mount St. Helens Eruption of May 18, 1980 (1984) (189)
- En échelon and orthogonal fault ruptures of the 11 April 2012 great intraplate earthquakes (2012) (186)
- Earthquake doublets in the Solomon Islands (1980) (184)
- Quantitative Seismology, Second Edition (2003) (180)
- Temporal variation of large intraplate earthquakes in coupled subduction zones (1989) (174)
- The 17 July 2006 Java tsunami earthquake (2006) (170)
- The 2009 Samoa–Tonga great earthquake triggered doublet (2010) (166)
- Rupture characteristics of major and great (Mw ≥ 7.0) megathrust earthquakes from 1990 to 2015: 1. Source parameter scaling relationships (2016) (165)
- A great earthquake doublet and seismic stress transfer cycle in the central Kuril islands (2008) (161)
- Large intermediate-depth earthquakes and the subduction process (1988) (160)
- The Core-Mantle Boundary (1987) (160)
- An Asperity Model of Large Earthquake Sequences (2013) (141)
- The 2006–2007 Kuril Islands great earthquake sequence (2009) (140)
- The global seismographic network surpasses its design goal (2004) (131)
- The 1 April 2014 Iquique, Chile, Mw 8.1 earthquake rupture sequence (2014) (119)
- Seismic detection of folded, subducted lithosphere at the core–mantle boundary (2006) (119)
- Lateral variations in lowermost mantle shear wave anisotropy beneath the north Pacific and Alaska (1997) (115)
- Multiple phase analysis of the shear velocity structure in the D″ region beneath Alaska (1990) (112)
- The surge of great earthquakes from 2004 to 2014 (2015) (109)
- Phase transitions in pyrolite and MORB at lowermost mantle conditions: Implications for a MORB-rich pile above the core–mantle boundary (2008) (107)
- High-resolution imaging of lowermost mantle structure under the Cocos plate (2004) (107)
- Localized fault slip to the trench in the 2010 Maule, Chile Mw = 8.8 earthquake from joint inversion of high‐rate GPS, teleseismic body waves, InSAR, campaign GPS, and tsunami observations (2014) (105)
- Empirical Green function deconvolution of broadband surface waves: rupture directivity of the 1992 Landers, California (Mw = 7.3), earthquake (1994) (104)
- Geometric effects of global lateral heterogeneity on long‐period surface wave propagation (1985) (104)
- Seismic evidence for small-scale dynamics in the lowermost mantle at the root of the Hawaiian hotspot (1998) (101)
- The October 28, 2012 Mw 7.8 Haida Gwaii underthrusting earthquake and tsunami: Slip partitioning along the Queen Charlotte Fault transpressional plate boundary (2013) (99)
- Rapid estimation of rupture directivity: Application to the 1992 Landers (MS = 7.4) and Cape Mendocino (MS = 7.2), California earthquakes (1993) (97)
- Evidence for a shear velocity discontinuity in the lower mantle beneath India and the Indian Ocean (1987) (95)
- Imaging short‐period seismic radiation from the 27 February 2010 Chile (MW 8.8) earthquake by back‐projection of P, PP, and PKIKP waves (2012) (95)
- A review of the rupture characteristics of the 2011 Tohoku-oki Mw 9.1 earthquake (2017) (94)
- Subduction zone megathrust earthquakes (2018) (94)
- Variable Azimuthal Anisotropy in Earth's Lowermost Mantle (2004) (93)
- Insights from the great 2011 Japan earthquake (2011) (92)
- The D″ Discontinuity and its Implications (2013) (89)
- Why the Lg phase does not traverse oceanic crust (1995) (89)
- Energy Release of the 2013 Mw 8.3 Sea of Okhotsk Earthquake and Deep Slab Stress Heterogeneity (2013) (86)
- Analysis of seismic SV waves in the core's penumbra (1991) (86)
- Recognizing Foreshocks from the 1 April 2014 Chile Earthquake (2014) (85)
- Implications of lower-mantle structural heterogeneity for the existence and nature of whole-mantle plumes (2007) (84)
- The 5 September 2012 Nicoya, Costa Rica Mw 7.6 earthquake rupture process from joint inversion of high‐rate GPS, strong‐motion, and teleseismic P wave data and its relationship to adjacent plate boundary interface properties (2013) (83)
- Investigation of laterally heterogeneous shear velocity structure in D″ beneath Eurasia (1992) (82)
- Outer trench-slope faulting and the 2011 Mw 9.0 off the Pacific coast of Tohoku Earthquake (2011) (79)
- Anticorrelated Seismic Velocity Anomalies from Post-Perovskite in the Lowermost Mantle (2008) (77)
- Coseismic Rupture Process of the Large 2019 Ridgecrest Earthquakes From Joint Inversion of Geodetic and Seismological Observations (2019) (76)
- The Excitation of Lg Waves by Explosions: A Finite-Difference Investigation (1994) (76)
- The shear‐wave velocity gradient at the base of the mantle (1983) (75)
- The 2012 Mw 8.6 Wharton Basin sequence: A cascade of great earthquakes generated by near‐orthogonal, young, oceanic mantle faults (2015) (74)
- Source Rupture Models for the Mw 9.0 2011 Tohoku Earthquake from Joint Inversions of High‐Rate Geodetic and Seismic Data (2013) (74)
- The 16 April 2016, MW 7.8 (MS 7.5) Ecuador earthquake: A quasi-repeat of the 1942 MS 7.5 earthquake and partial re-rupture of the 1906 MS 8.6 Colombia–Ecuador earthquake (2016) (74)
- Deep Mantle Seismic Modeling and Imaging (2011) (73)
- Rapidly Estimated Seismic Source Parameters for the 16 September 2015 Illapel, Chile Mw 8.3 Earthquake (2016) (73)
- Effects of Kinematic Constraints on Teleseismic Finite-Source Rupture Inversions: Great Peruvian Earthquakes of 23 June 2001 and 15 August 2007 (2009) (72)
- Structure of the core‐mantle transition zone (1989) (72)
- The Fate of Descending Slabs (1994) (72)
- The 2011 Mw 9.0 off the Pacific coast of Tohoku Earthquake: Comparison of deep-water tsunami signals with finite-fault rupture model predictions (2011) (71)
- Source Process of the Great 1977 Sumba Earthquake (1988) (69)
- A strongly negative shear velocity gradient and lateral variability in the lowermost mantle beneath the Pacific (1997) (68)
- 15. Anomalous Earthquake Ruptures at Shallow Depths on Subduction Zone Megathrusts (2007) (67)
- Radiated seismic energy and earthquake source duration variations from teleseismic source time functions for shallow subduction zone thrust earthquakes (2004) (66)
- Localized velocity anomalies in the lower mantle (1983) (66)
- D shear velocity heterogeneity, anisotropy and discontinuity structure beneath the Caribbean and Central America (2002) (66)
- Supershear rupture of the 5 January 2013 Craig, Alaska (Mw 7.5) earthquake (2013) (64)
- Two regions of seafloor deformation generated the tsunami for the 13 November 2016, Kaikoura, New Zealand earthquake (2017) (64)
- Recent large earthquakes near Cape Mendocino and in the Gorda plate: Broadband source time functions, fault orientations, and rupture complexities (1994) (64)
- Long‐period regional wave moment tensor inversion for earthquakes in the western United States (1995) (63)
- Tomographic inversion of S-SKS times for shear velocity heterogeneity in D″: Degree 12 and hybrid models (2000) (62)
- Rapid source mechanism determination of large (Mw≥5) earthquakes in the western United States (1993) (62)
- Azimuthal anisotropy in the D″ layer beneath the Caribbean (2005) (62)
- Ultralow Velocity Zone at the Core‐Mantle Boundary (2013) (62)
- Rupture process of the 2010 Mw 7.8 Mentawai tsunami earthquake from joint inversion of near‐field hr‐GPS and teleseismic body wave recordings constrained by tsunami observations (2014) (61)
- Small‐scale lateral shear velocity and anisotropy heterogeneity near the core‐mantle boundary beneath the central Pacific imaged using broadband ScS waves (1999) (61)
- Global seismographic network records the Great Sumatra‐Andaman earthquake (2005) (60)
- A shear velocity discontinuity in the lower mantle (1983) (59)
- Shear wave splitting and waveform complexity for lowermost mantle structures with low‐velocity lamellae and transverse isotropy (2004) (59)
- The April 22, 1991, Valle de la Estrella, Costa Rica (Mw = 7.7) earthquake and its tectonic implications: A broadband seismic study (1993) (55)
- Localized double-array stacking analysis of PcP: D? and ULVZ structure beneath the Cocos plate, Mexi (2009) (55)
- Data‐dependent non‐double‐couple components of shallow earthquake source mechanisms: Effects of waveform inversion instability (1994) (55)
- A Great Earthquake Rupture Across a Rapidly Evolving Three-Plate Boundary (2009) (55)
- Global surface wave phase velocity variations (1996) (54)
- Characteristics of Lg attenuation in the Tibetan Plateau (2002) (54)
- Post-Perovskite: The Last Mantle Phase Transition (2007) (54)
- Systematic deficiency of aftershocks in areas of high coseismic slip for large subduction zone earthquakes (2018) (53)
- Deep Earth Structure – Lower Mantle and D″ (2015) (52)
- Body wave amplitude patterns and upper mantle attenuation variations across North America (1981) (51)
- The 2017 Mw 8.2 Chiapas, Mexico, Earthquake: Energetic Slab Detachment (2017) (51)
- LARGE EARTHQUAKES IN THE TONGA REGION ASSOCIATED WITH SUBDUCTION OF THE LOUISVILLE RIDGE (1988) (50)
- Seismic anisotropy in the lowermost mantle beneath the Pacific (1998) (50)
- Reconciling the Post‐Perovskite Phase with Seismological Observations of Lowermost Mantle Structure (2013) (49)
- Joint modeling of teleseismic and tsunami wave observations to constrain the 16 September 2015 Illapel, Chile, Mw 8.3 earthquake rupture process (2016) (48)
- Investigation of upper mantle discontinuities near Northwestern Pacific Subduction Zones using precursors to sSH (1993) (48)
- Influence of fault plane heterogeneity on the seismic behavior in the Southern Kurile Islands Arc (1989) (47)
- Modeling of the 2011 Tohoku Near-Field Tsunami from Finite-Fault Inversion of Seismic Waves (2012) (47)
- Scale lengths of shear velocity heterogeneity at the base of the mantle from S wave differential travel times (1997) (46)
- Analysis of short-period regional phase path effects associated with topography in Eurasia (1994) (46)
- Shear velocity variation within the D″ region beneath the central Pacific (2006) (46)
- A broadband seismological investigation of the 1989 Loma Prieta, California, earthquake: Evidence for deep slow slip? (1991) (46)
- Lateral variation of the D″ discontinuity beneath the Cocos Plate (2004) (46)
- Strong Lg Attenuation in the Tibetan Plateau (2003) (45)
- The 22 December 2018 tsunami from flank collapse of Anak Krakatau volcano during eruption (2020) (45)
- Deep mantle structure and the postperovskite phase transition. (2005) (45)
- Rupture characteristics of major and great (Mw ≥ 7.0) megathrust earthquakes from 1990 to 2015: 2. Depth dependence (2016) (44)
- A Self‐Consistent Fault Slip Model for the 2011 Tohoku Earthquake and Tsunami (2017) (43)
- A new probe of ULVZ S‐wave velocity structure: Array stacking of ScS waveforms (2006) (42)
- Geometric Spreading of Pn and Sn in a Spherical Earth Model (2007) (42)
- A comparison of methodologies for representing path effects on regional P/S discriminants (1999) (41)
- Finite frequency tomography of D″ shear velocity heterogeneity beneath the Caribbean (2004) (41)
- Strong Lg wave attenuation in the Northern and Eastern Tibetan Plateau measured by a two‐station/two‐event stacking method (2003) (41)
- The February 6, 2013 Mw 8.0 Santa Cruz Islands earthquake and tsunami (2013) (40)
- The 2018 MW 7.9 Gulf of Alaska Earthquake: Multiple Fault Rupture in the Pacific Plate (2018) (40)
- Systematic non‐double‐couple components of earthquake mechanisms: The role of fault zone irregularity (1994) (40)
- Coexisting shear‐ and compressional‐wave seismic velocity discontinuities beneath the central Pacific (2001) (40)
- Inversion of P coda for isotropic scatterers at the Yucca Flat test site (1989) (39)
- Pervasive Seismic Wave Reflectivity and Metasomatism of the Tonga Mantle Wedge (2007) (38)
- Seismic imaging of the laterally varying D″ region beneath the Cocos Plate (2007) (38)
- Statistical analysis of irregular wave-guide influences on regional seismic discriminants in China: Additional results for Pn/Sn, Pn/Lg, and Pg/Sn (1998) (38)
- Small scale lateral variations in azimuthally anisotropic D'' structure (2005) (38)
- Surges along the Honolulu coast from the 2011 Tohoku tsunami (2012) (37)
- Imaging a slow bilateral rupture with broadband seismic waves: The September 2, 1992 Nicaraguan tsunami earthquake (1994) (37)
- Long-period mechanism of the 8 November 1980 Eureka, California, earthquake (1982) (37)
- Source models and yield-scaling relations for underground nuclear explosions at Amchitka Island (1984) (36)
- Investigating Explosion Source Energy Partitioning and Lg-Wave Excitation Using a Finite-Difference plus Slowness Analysis Method (2005) (36)
- Modeling Near-Field and Teleseismic Observations From the Amchitka Test Site (1984) (36)
- Seismic Wave Anisotropy in the D″ Region and Its Implications (2013) (35)
- The effects of tectonic release on short-period P waves from NTS explosions (1984) (35)
- The core shadow zone boundary and lateral variations of the P velocity structure of the lowermost mantle (1989) (35)
- Rapid estimation of first‐order rupture characteristics for large earthquakes using surface waves: 2004 Sumatra‐Andaman earthquake (2006) (34)
- The Sanriku-Oki low-seismicity region on the northern margin of the great 2011 Tohoku-Oki earthquake rupture (2012) (34)
- Great Earthquakes and Global Seismic Networks (2010) (33)
- Global variations of large megathrust earthquake rupture characteristics (2018) (33)
- Analysis of near-source contributions to early P-wave coda for underground explosions. III. Inversion for isotropic scatterers (1987) (32)
- Core-mantle boundary structures and processes (2013) (32)
- Rupture of the 4 February 1976 Guatemalan earthquake (1989) (32)
- Source process of the great 1971 Solomon Islands doublet (1989) (32)
- Imaging scattering structures in the lower mantle by migration of long‐period S waves (1996) (32)
- Investigation of Deep Slab Structure Using Long-Period S Waves (1991) (32)
- The December 7, 2012 Japan Trench intraplate doublet (Mw 7.2, 7.1) and interactions between near-trench intraplate thrust and normal faulting (2013) (31)
- Evolution of oceanic upper mantle structure (1999) (31)
- Multidisciplinary impact of the deep mantle phase transition in perovskite structure (2005) (31)
- Isotropy or weak vertical transverse isotropy in D″ beneath the Atlantic Ocean (2004) (31)
- Large earthquake rupture process variations on the Middle America megathrust (2013) (31)
- High‐resolution investigation of shear wave anisotropy in D″ beneath the Cocos Plate (2004) (31)
- A comparison of regional-phase amplitude ratio measurement techniques (1997) (30)
- Assessment of teleseismically-determined source parameters for the April 25, 2015 MW 7.9 Gorkha, Nepal earthquake and the May 12, 2015 MW 7.2 aftershock (2017) (30)
- Rupture in the 4 May 2018 MW 6.9 Earthquake Seaward of the Kilauea East Rift Zone Fissure Eruption in Hawaii (2018) (30)
- Very broadband seismic analysis of the 1992 Flores, Indonesia, earthquake (Mw = 7.9) (1995) (29)
- Regional and stress drop effects on aftershock productivity of large megathrust earthquakes (2016) (29)
- Test of the lower mantle slab penetration hypothesis using broadband S waves (1986) (29)
- Intraslab Deformation in the 30 November 2018 Anchorage, Alaska, MW 7.1 Earthquake (2019) (29)
- The trouble with seeing double (2005) (28)
- Multiple ScS attenuation and travel times beneath western North America (1988) (28)
- Waveform complexity in teleseismic broadband SH displacements: Slab diffractions or deep mantle reflections? (1989) (28)
- Discovery of Post-Perovskite and New Views on the Core-Mantle Boundary Region (2008) (28)
- What Controls Variations in Aftershock Productivity? (2020) (28)
- Multiple SCS travel times and attenuation beneath Mexico and Central America (1983) (28)
- Ground Shaking and Seismic Source Spectra for Large Earthquakes around the Megathrust Fault Offshore of Northeastern Honshu, Japan (2013) (27)
- The isolated ∼680 km deep 30 May 2015 M W 7.9 Ogasawara (Bonin) Islands earthquake (2015) (27)
- Rupture Process of the 1995 Antofagasta Subduction Earthquake (Mw = 8.1) (1999) (27)
- Evidence of tectonic release in long-period S waves from underground nuclear explosions at the Novaya Zemlya test sites (1986) (26)
- Estimating the yields of the Amchitka tests by waveform intercorrelation (1984) (26)
- Investigation of a lower mantle shear wave triplication using a broadband array (1984) (26)
- Seismological implications of a lithospheric low seismic velocity zone in Mars (2015) (25)
- Estimating explosion yield by analytical waveform comparison (1985) (25)
- The Gilbert Islands (Republic of Kiribati) earthquake swarm of 1981—1983 (1983) (25)
- Shear wave travel time, amplitude, and waveform analysis for earthquakes in the kurile slab: Constraints on deep slab structure and mantle heterogeneity (1991) (24)
- Low Vp/Vs ratios in the crust and upper mantle beneath the Sea of Okhotsk inferred from teleseismic pMP, sMP, and sMS underside reflections from the Moho (2006) (24)
- Intraplate deformation in the Samoa-Gilbert-Ralik area: A prelude to a change of plate boundaries in the Southwest Pacific? (1986) (24)
- Source parameters of the 1989 Loma Prieta earthquake determined from long-period Rayleigh waves (1990) (24)
- Rupture of the 2020 MW 7.8 Earthquake in the Shumagin Gap Inferred From Seismic and Geodetic Observations (2020) (24)
- Comment on “Coupling semantics and science in earthquake research” (2004) (23)
- EVIDENCE OF A LOWER MANTLE SHEAR VELOCITY DISCONTINUITY IN S AND sS PHASES (1986) (23)
- Rapid Source-Mechanism Analysis of the April 29, 1993 Cataract Creek (Mw = 5.3), Northern Arizona Earthquake (1994) (22)
- Estimating the relative yields of Novaya Zemlya tests by waveform intercorrelation (1986) (22)
- Statistical analysis of irregular wave-guide influences on regional seismic discriminants in China (1998) (22)
- Reply to “Comments on ‘Average Q and yield estimates from the Pahute mesa test site’” (1987) (22)
- The 2 March 2016 Wharton Basin Mw 7.8 earthquake: High stress drop north‐south strike‐slip rupture in the diffuse oceanic deformation zone between the Indian and Australian Plates (2016) (21)
- Routine estimation of earthquake source complexity: the 18 October 1992 Colombian earthquake (1994) (21)
- The 2011 Northern Kermadec earthquake doublet and subduction zone faulting interactions (2013) (21)
- Intraplate and interplate faulting interactions during the August 31, 2012, Philippine Trench earthquake (Mw 7.6) sequence (2012) (21)
- Source time function complexity of the great 1989 Macquarie Ridge earthquake (1993) (21)
- The velocity structure of the crust and upper mantle under China from broad-band P and PP waveform analysis (1994) (21)
- Validation of linearity assumptions for using tsunami waveforms in joint inversion of kinematic rupture models: Application to the 2010 Mentawai Mw 7.8 tsunami earthquake (2015) (20)
- Two Foreshock Sequences Post Gulia and Wiemer (2019) (2020) (20)
- Analysis of near-source contributions to early P-wave coda for underground explosions. I. waveform complexity (1987) (20)
- The 22 July 2020 M 7.8 Shumagin seismic gap earthquake: Partial rupture of a weakly coupled megathrust (2021) (20)
- Seismic imaging of subducted slabs: Trade‐offs with deep path and near‐receiver effects (1991) (20)
- Diverse rupture processes in the 2015 Peru deep earthquake doublet (2016) (20)
- Seismological Constraints on the Velocity Structure and Fate of Subducting Lithospheric Slabs: 25 Years of Progress (1994) (19)
- Seismic wave-field observations at a dense, small-aperture array located on a landslide in the Santa Cruz Mountains, California (1996) (19)
- Modeling tsunami observations to evaluate a proposed late tsunami earthquake stage for the 16 September 2015 Illapel, Chile, Mw 8.3 earthquake (2016) (19)
- Rupture process of the 1990 Luzon, Philippines (Mw = 7.7), earthquake (1996) (19)
- Effects of D″ anisotropy on seismic velocity models of the outermost core (1998) (19)
- 1.18 – Deep Earth Structure – Lower Mantle and D″ (2007) (19)
- Introduction to the Special Issue on the 2011 Tohoku Earthquake and Tsunami (2013) (18)
- Earthquakes: A Chilean surprise (2011) (18)
- Analysis of amplitude and travel-time anomalies for short-period P-waves from NTS explosions (1988) (18)
- Tsunami surges around the Hawaiian Islands from the 1 April 2014 North Chile Mw 8.1 earthquake (2014) (18)
- BODY-WAVE AMPLITUDE AND TRAVEL-TIME CORRELATIONS ACROSS NORTH AMERICA (1983) (18)
- Explosion-Source Energy Partitioning and Lg-Wave Excitation: Contributions of Free-Surface Scattering (2008) (18)
- The deep mantle thermo-chemical boundary layer: The putative mantle plume source (2005) (18)
- Complementary slip distributions of the August 4, 2003 Mw 7.6 and November 17, 2013 Mw 7.8 South Scotia Ridge earthquakes (2014) (18)
- DURATION AND DEPTH OF FAULTING OF THE 22 JUNE 1977 TONGA EARTHQUAKE (1989) (18)
- T Tsunamigenic Major and Great Earthquakes ( 2004 – 2013 ) : Source Processes Inverted from Seismic , Geodetic , and Sea-Level Data (2016) (17)
- Effects of off great-circle propagation on the phase of long-period surface waves (1987) (17)
- Mineralogy of the Deep Mantle – The Post-Perovskite Phase and its Geophysical Significance (2015) (17)
- Constraining the Dip of Shallow, Shallowly Dipping Thrust Events Using Long‐Period Love Wave Radiation Patterns: Applications to the 25 October 2010 Mentawai, Indonesia, and 4 May 2018 Hawaii Island Earthquakes (2018) (17)
- Regionalized versus single-station wave-guide effects on seismic discriminants in western China (1998) (16)
- Effects of crustal structure under the Barents and Kara Seas on short-period regional wave propagation for Novaya Zemlya explosions: Empirical relations (1994) (16)
- Remote Triggering Not Evident Near Epicenters of Impending Great Earthquakes (2013) (16)
- Variation of regional seismic discriminants with surface topographic roughness in the Western United States (1996) (16)
- Intraslab rupture triggering megathrust rupture coseismically in the 17 December 2016 Solomon Islands Mw 7.9 earthquake (2017) (15)
- Comparison of Depth Dependent Fault Zone Properties in the Japan Trench and Middle America Trench (1999) (15)
- Standards for Documenting Finite‐Fault Earthquake Rupture Models (2016) (15)
- Yield Estimates for the Six North Korean Nuclear Tests From Teleseismic P Wave Modeling and Intercorrelation of P and Pn Recordings (2019) (15)
- Structure of the Earth: Mantle and core (1987) (15)
- Analysis of near-source contributions to early P-wave coda for underground explosions. II. Frequency dependence (1987) (15)
- Depth Dependent Rupture Properties in Circum‐Pacific Subduction Zones (2013) (15)
- Lower mantle heterogeneity beneath Eurasia imaged by parametric migration of shear waves (1998) (14)
- Seismology: Why giant earthquakes keep catching us out (2012) (14)
- Dynamic Sea Level Variation From GNSS: 2020 Shumagin Earthquake Tsunami Resonance and Hurricane Laura (2021) (14)
- Rapid Seismological Quantification of Source Parameters of the 25 April 2015 Nepal Earthquake (2015) (14)
- The April 5, 1990 Mariana Islands earthquake and subduction zone stresses (1992) (14)
- Santa Cruz mountains (Loma Prieta) earthquake (1989) (14)
- Rupture Along 400 km of the Bering Fracture Zone in the Komandorsky Islands Earthquake (MW 7.8) of 17 July 2017 (2017) (14)
- Studies of the Earth's Deep Interior: Goals and Trends (1990) (14)
- The 2011 Tohoku Earthquake (2012) (14)
- Improved resolution of earthquake source parameters from long-period surface wave inversions (1992) (14)
- Tsunamigenic Major and Great Earthquakes (2004–2013): Source Processes Inverted from Seismic, Geodetic, and Sea-Level Data (2021) (13)
- Rupture‐Depth‐Varying Seismicity Patterns for Major and Great (Mw ≥ 7.0) Megathrust Earthquakes (2017) (13)
- Effects of 2D Random Velocity Heterogeneities in the Mantle Lid and Moho Topography on Pn Geometric Spreading (2011) (13)
- Grand Challenges for Seismology (2009) (12)
- Structure and Fate of Subducting Slabs (1996) (12)
- Using shear wave amplitude patterns to detect metastable olivine in subducted slabs (2002) (12)
- Long-period surface wave inversion for source parameters of the 18 October 1989 Loma Prieta earthquake (1993) (12)
- The 4 May 2018 Mw 6.9 Hawaii Island Earthquake and Implications for Tsunami Hazards (2018) (12)
- Effects of centroid location on determination of earthquake mechanisms using long-period surface waves (1990) (12)
- Evaluating the Updip Extent of Large Megathrust Ruptures Using Pcoda Levels (2019) (12)
- Near-real-time seismology: rapid analysis of earthquake faulting (1994) (11)
- Effects of lateral velocity heterogeneity under the Nevada Test Site on short-periodP wave amplitudes and travel times (1990) (11)
- COMPARISON OF LONG-PERIOD SURFACE WAVE AMPLITUDE AND PHASE ANOMALIES FOR TWO MODELS OF GLOBAL LATERAL HETEROGENEITY (1985) (11)
- Along‐dip seismic radiation segmentation during the 2007 Mw 8.0 Pisco, Peru earthquake (2012) (11)
- Constraints on the Kurile slab from shear wave residual sphere analysis (1999) (11)
- The 3 May 2006 (Mw 8.0) and 19 March 2009 (Mw 7.6) Tonga earthquakes: Intraslab compressional faulting below the megathrust (2015) (11)
- Source Effects on Regional Seismic Discriminant Measurements (2002) (11)
- Aftershocks of the 2012 Mw 7.6 Nicoya, Costa Rica, Earthquake and Mechanics of the Plate Interface (2017) (11)
- The 23 June 2014 Mw 7.9 Rat Islands archipelago, Alaska, intermediate depth earthquake (2014) (11)
- Analysis of the 1986 Mt. Lewis, California, earthquake: preshock sequence-mainshock-aftershock sequence (1993) (11)
- Enhancing Tsunami Warning Using P Wave Coda (2019) (11)
- New constraints on the 1922 Atacama, Chile, earthquake from Historical seismograms (2019) (11)
- A new method for determining the long‐period component of the source time function of large earthquakes (1989) (10)
- Mantle dynamics and seismic tomography. (2000) (10)
- Anomalously low aftershock productivity of the 2019 M 8.0 energetic intermediate-depth faulting beneath Peru (2020) (10)
- MODELING AND EMPIRICAL RESEARCH ON ENERGY PARTITIONING OF REGIONAL SEISMIC PHASES USED FOR EXPLOSION MONITORING (2005) (10)
- Large earthquake processes in the northern Vanuatu subduction zone (2014) (10)
- Comment on “Wave propagation effects and the Earth's structure in the lower mantle” (1987) (10)
- Nepal at Risk: Interdisciplinary Lessons Learned from the April 2015 Nepal (Gorkha) Earthquake and Future Concerns, (2016) (10)
- Reactivation of Oceanic Fracture Zones in Large Intraplate Earthquakes? (2019) (10)
- A matter for resolution (1991) (10)
- Time-domain Pure-state Polarization Analysis of Surface Waves Traversing California (2003) (9)
- The 29 July 2021 MW 8.2 Chignik, Alaska Peninsula Earthquake Rupture Inferred From Seismic and Geodetic Observations: Re‐Rupture of the Western 2/3 of the 1938 Rupture Zone (2022) (9)
- Comparison of broadband and short-period seismic waveform stacks : implications for upper-mantle discontinuity structure (1995) (9)
- National Seismic System science plan (1989) (9)
- Observations of teleseismicP wave coda for underground explosions (1988) (8)
- Resolving Complicated Faulting Process Using Multi‐Point‐Source Representation: Iterative Inversion Algorithm Improvement and Application to Recent Complex Earthquakes (2020) (8)
- Seismology of the lower mantle and core-mantle boundary (1995) (8)
- Rupture Model for the 29 July 2021 MW 8.2 Chignik, Alaska Earthquake Constrained by Seismic, Geodetic, and Tsunami Observations (2022) (8)
- Observing Mass Transport to Understand Global Change and and to benefit Society : Science and User Needs - An international multi-disciplinary initiative for IUGG (2015) (8)
- The 2019 Ridgecrest, California earthquake sequence: Evolution of seismic and aseismic slip on an orthogonal fault system (2021) (8)
- Effects of dispersion in tsunami Green's functions and implications for joint inversion with seismic and geodetic data: A case study of the 2010 Mentawai Mw 7.8 earthquake (2016) (8)
- ′ shear velocity heterogeneity , anisotropy and discontinuity structure beneath the Caribbean and Central America (2003) (8)
- The Prospect of Using Three-Dimensional Earth Models to Improve Nuclear Explosion Monitoring and Ground-motion Hazard Assessment (2009) (7)
- Modeling S wave amplitude patterns for events in the Kurile slab using three‐dimensional Gaussian beams (2002) (7)
- Yield Estimate (230 kt) for a Mueller‐Murphy Model of the 3 September 2017, North Korean Nuclear Test (mbNEIC = 6.3) From Teleseismic Broadband P Waves Assuming Extensive Near‐Source Damage (2018) (7)
- Nuclear test illuminates US array data quality (2007) (7)
- REPLY TO COMMENTS BY A. DOUGLAS, J. B. YOUNG, AND N. S. LYMAN AND A NOTE ON THE REVISED MOMENTS FOR PAHUTE MESA TECTONIC RELEASE (1986) (7)
- Phase boundaries and mantle convection. (1993) (7)
- Path Corrections for Source Discriminants: A Case Study at Two International Seismic Monitoring Stations (2002) (6)
- Multifault Opposing‐Dip Strike‐Slip and Normal‐Fault Rupture During the 2020 Mw 6.5 Stanley, Idaho Earthquake (2021) (6)
- The Log (rms Lg)-mb Scaling Law Slope (1995) (6)
- Reply to “Comment on ‘Two Foreshock Sequences Post Gulia and Wiemer (2019)’ by Kelian Dascher-Cousineau, Thorne Lay, and Emily E. Brodsky” by Laura Gulia and Stefan Wiemer (2021) (6)
- The Teleseismic Manifestation of pP: Problems and Paradoxes (2013) (6)
- Rupture Process of the 7 January 2020, MW 6.4 Puerto Rico Earthquake (2020) (5)
- Response to Comment on "The Great Sumatra-Andaman Earthquake of 26 December 2004" (2005) (5)
- Inverting the power spectrum for a heterogeneous medium (2007) (5)
- Quantifying Source Excitation and Path Effects for High Frequency Regional Waves (2004) (5)
- The 25 March 2020 M 7.5 Paramushir, northern Kuril Islands earthquake and major (M ≥ 7.0) near-trench intraplate compressional faulting (2021) (5)
- Complete PP-waveform modelling for determining crust and upper mantle structure (1993) (5)
- IASPEI: its origins and the promotion of global seismology (2019) (5)
- Benchmarking the Optimal Time Alignment of Tsunami Waveforms in Nonlinear Joint Inversions for the Mw 8.8 2010 Maule (Chile) Earthquake (2020) (5)
- Geophysics of the core and core‐mantle boundary: Introduction to the special issue (1986) (4)
- Transform Plate Boundaries and Fracture Zones (2019) (4)
- Effects of Source Faulting and Fringing Reefs on the 2009 South Pacific Tsunami Inundation in Southeast Upolu, Samoa (2020) (4)
- Wrinkles on the inside (1992) (4)
- Rupture Process of the 2008 Wenchuan, China, Earthquake: A Review (2019) (4)
- Fifteen Years of (Major to Great) Tsunamigenic Earthquakes (2020) (4)
- Localized Fault Slip to the Trench in the 2010 Maule, Chile M w = 8.8 Earthquake from Joint Inversion of High-Rate GPS, Teleseismic Body Waves, InSAR, and Tsunami Observations (2014) (4)
- Modeling the 2011 Tohoku-oki tsunami and its impacts on Hawaii (2011) (4)
- A search for seismic radiation from late slip for the December 26, 2004 Sumatra‐Andaman (Mw = 9.15) earthquake (2006) (4)
- Living on an Active Earth: Perspectives on Earthquake Science (2004) (4)
- The 17 July 2006 Java Tsunami Earthquake (Mw = 7.8) (2006) (4)
- Seismic and Geodetic Analysis of Rupture Characteristics of the 2020 Mw 6.5 Monte Cristo Range, Nevada, Earthquake (2021) (4)
- Reassessment of a reported S-delay under Trindade (1981) (4)
- Sharpness of the D 00 discontinuity beneath the Cocos Plate : Implications for the perovskite to post-perovskite phase transition (2008) (4)
- The wave blown around the world (2022) (4)
- Frequency‐Dependent Effects of 2D Random Velocity Heterogeneities in the Mantle Lid on Pn Geometric Spreading (2017) (4)
- Shallow Megathrust Slip During Large Earthquakes That Have High P Coda Levels (2020) (3)
- 3-D seismic imaging of the D" region beneath the Cocos Plate (2004) (3)
- New initiative in studies of Earth's deep interior (1993) (3)
- Great Tsunami: 26 December 2004, Sumatra Region (2006) (3)
- The 2010 Chile Earthquake - Variations in the Rupture Mode (2010) (3)
- Path Corrections For Regional Phase Discriminants (2000) (3)
- Analysis of seismic magnitude differentials (mb−Mw) across megathrust faults in the vicinity of recent great earthquakes (2012) (3)
- Tsunami size variability with rupture depth (2021) (3)
- Macrofracturing of Oceanic Lithosphere in Complex Large Earthquake Sequences (2020) (3)
- Slab burial grounds (1995) (3)
- Optimizing a Model of Coseismic Rupture for the 22 July 2020 MW 7.8 Simeonof Earthquake by Exploiting Acute Sensitivity of Tsunami Excitation Across the Shelf Break (2022) (3)
- Deep earth: Post-perovskite at ten (2014) (2)
- D" Anisotropy Beneath the Atlantic Ocean and the Southern Pacific Ocean (2002) (2)
- 51 - The Earth's Interior (2002) (2)
- Solid Earth–atmosphere interaction forces during the 15 January 2022 Tonga eruption (2023) (2)
- A GLOBAL SURGE OF GREAT EARTHQUAKES FROM 2004-2014 AND IMPLICATIONS FOR CASCADIA (2014) (2)
- The 16 April 2016, M w 7.8 Ecuador earthquake: a quasi-repeater of the 1942 M s 7.5 earthquake and partial re-rupture of the 1906 M s 8.6 Colombia-Ecuador earthquake (2016) (2)
- Transport properties of the lower mantle (2010) (2)
- Mantle, lower: Structure (1989) (2)
- Donald V. Helmberger (1938–2020) (2021) (2)
- An introduction to post-perovskite: The last mantle phase transition (2013) (2)
- Analysis of Teleseismic P Wave Amplitude and Coda Variations for Underground Explosions (1989) (2)
- Calibration of Regional Wave Discriminants in Diverse Geological Environments: Topographic Correlations, (1997) (2)
- Updated concepts of seismic gaps and asperities to assess great earthquake hazard along South America (2022) (2)
- Near-source contributions to teleseismic p waves and p-wave coda for underground explosions. (Reannouncement with new availability information) (1992) (2)
- The deep roots of continents (1988) (2)
- DEVELOPMENT OF REGIONAL PHASE TOMOGRAPHIC ATTENUATION MODELS FOR EURASIA (2008) (2)
- Analysis of the Effects of Eurasian Crustal and Upper Mantel Structure on Regional Phases Using Broadband Seismic Data (1993) (2)
- Effects of Laterally Varying Mantle Lid Velocity Gradient and Crustal Thickness on Pn Geometric Spreading with Application to the North Korean Test Site (2017) (2)
- Path Corrections for Source Discriminants : A Case Study at Two International Seismic Monitoring Stations (2002) (2)
- Crustal Waveguide Effects on Regional Phases in China and Southeast Asia (1997) (2)
- Is Bigger Really Better (2008) (1)
- Joint Inversion of High‐Rate GPS and Teleseismic Observations for Rupture Process of the 23 June 2014 (Mw 7.9) Rat Islands Archipelago, Alaska, Intermediate Depth Earthquake (2016) (1)
- Imaging the rupture of the 27 February 2010 Chile (Mw 8.8) earthquake via backprojection of P, PP, and PKP waves (2010) (1)
- Imaging the ruptures of the 2009 Samoan and Sumatran earthquakes using broadband network back-projections: Results and limitations (2009) (1)
- Earthquake prediction, forecasting, & early warning (2021) (1)
- Seismogram interpretation and processing (2021) (1)
- An overview of earthquake and seismic-wave mechanics (2021) (1)
- The Sanriku-oki Low Seismicity Region on the Northern Margin of the Great 2011 Tohoku Earthquake (2011) (1)
- Direct Estimation of Explosion Pn Green’s Functions Applied to Teleseismic P-wave Intercorrelations for North Korean Nuclear Tests (2022) (1)
- Rupture Directivity of the 2021 MW 6.0 Yangbi, Yunnan Earthquake (2022) (1)
- Analysis of Seismic Magnitude Differentials (mb - Mw) Across the Megathrust Faults in the Vicinity of Recent Great Earthquakes in Japan, Chile and Sumatra (2011) (1)
- Determining Shear Velocity Structure of ULVZs Using Stacked ScS Data (2003) (1)
- Intercorrelation of P and Pn Recordings for the North Korean Nuclear Tests (2017) (1)
- Lay receives 1991 Macelwane Medal (1992) (1)
- Aftershock productivity of large megathrust earthquakes: regional variations and influence of mainshock source parameters (2016) (1)
- Reply to: Comment by Rodrigo Cienfuegos on “Rapidly Estimated Seismic Source Parameters for the 16 September 2015 Illapel, Chile, Mw 8.3 Earthquake” by Lingling Ye, Thorne Lay, Hiroo Kanamori, and Keith D. Koper (2019) (1)
- NEAR SOURCE ENERGY PARTITIONING FOR REGIONAL WAVES IN 2 D AND 3 D MODELS : EFFECTS FROM RANDOM FREE SURFACE SCATTERING (2007) (1)
- Measuring complex spectra of long-period surface waves for earthquake source analysis (1989) (1)
- Source characteristics of the 3 September 2017, North Korean nuclear test (m b = 6.3) inferred from teleseismic forward modeling and regional waveform deconvolution of broadband P and Pn waves (2017) (1)
- Rupture Process of the Great Sumatra-Andaman Earthquake (2005) (1)
- Great Earthquake Ruptures in the Age of Seismo-Geodesy (2011) (1)
- Earthquake size & descriptive earthquake statistics (2021) (1)
- Determination of earthquake source mechanisms using teleseismic 30-140 s waves : The January 17, 1994, Northridge earthquake (1997) (1)
- The 2018 M W 7.9 Gulf of Alaska Earthquake: Multiple Fault Rupture in the Paci fi c Plate (2018) (1)
- Effects of rupture source and fringing reefs on the 2009 South Pacific tsunami inundation on southeast Upolu Island, Samoa (2020) (1)
- Great Earthquakes on Plate Boundaries (2016) (1)
- Future Geophysical Facilities Required to Address Grand Challenges in the Earth Sciences (2015) (1)
- High-speed rupture during the initiation of the 2015 Bonin Islands deep earthquake (2015) (0)
- Anisotropy and Velocity Discontinuities in the D" Region (2001) (0)
- 606 Lay and Young : Slab Diffractions or Deep Mantle Reflections ? (2007) (0)
- Illumination Assessment for the Seismic-Array, Applications to the USArray Project (2004) (0)
- InSight detection of a Lithospheric Low Seismic Velocity Zone in Mars (2014) (0)
- Mantle D″ Layer (2020) (0)
- Synthetic Seismograms in Heterogeneous Elastic Waveguides and Applications in Investigating LG-Wave Propagation (1998) (0)
- Responding to Media Inquiries About Remote Triggering Interactions (2020) (0)
- Preface to the special memorial issue for Professor Donald V. Helmberger (2022) (0)
- Megathrust Properties and Large Earthquake Rupture Processes (2014) (0)
- ' s personal copy The February 6 , 2013 Mw 8 . 0 Santa Cruz Islands earthquake and tsunami (2017) (0)
- Imaging Earth's interior (2021) (0)
- Rupture Process of the Tonga Earthquakes of 3 May 2006 (M w 8.0) and 19 March 2009 (M w 7.6): Intraslab Thrust Deformation Below the Megathrust (2014) (0)
- Metadata of the chapter that will be visualized online (2010) (0)
- Exploring GPS Observations of Postseismic Deformation Following the 2012 MW7.8 Haida Gwaii and 2013 MW7.5 Craig, Alaska Earthquakes: Implications for Viscoelastic Earth Structure (2021) (0)
- Earth structure (2021) (0)
- Evaluating the Updip Extent of Large Megathrust Ruptures Using <i>P</i><sub>coda</sub> Levels (2019) (0)
- The Lowermost Mantle Beneath Central America Imaged by Kirchhoff Migration of Scatterers and Reflectors (2007) (0)
- Analysis of 3d complex structure and heterogeneity effects on formation and propagation of regional phases in Eurasia. Final report, 15 August 1992-30 September 1994 (1994) (0)
- LYNNES AND LAY : SOURCE PROCESS OF THE 1977 SUMMA EARTHQUAKE (2007) (0)
- Depth Variations in Large Megathrust Earthquake Rupture Processes (2014) (0)
- List of reviewers (2016) (0)
- Supershear Rupture of 2013 Jan 05, Mw 7.5, Craig, Alaska earthquake (2013) (0)
- Surface waves (2019) (0)
- D" Anisotropy and Heterogeneity Beneath the Caribbean and Central America (2001) (0)
- IMPROVING DISCRIMINANTS FOR SOURCE IDENTIFICATION (2002) (0)
- Body waves and ray theory – travel times (2021) (0)
- Contributors (2019) (0)
- An introduction to earthquake location (2021) (0)
- Evolving Three-Plate Boundary A Great Earthquake Rupture Across a Rapidly (2009) (0)
- Measured energy in Japan quake (2012) (0)
- Source Mechanism and Near-field Characteristics of the 2011 Tohoku-oki Tsunami (2011) (0)
- TOWARD UNIFIED CORRECTION OF REGIONAL PHASES FOR AMPLITUDE AND TRAVEL TIME EFFECTS OF HETEROGENEOUS STRUCTURE Annual Report (2015) (0)
- A graduate student experience with Professor Donald V. Helmberger (2022) (0)
- Rupture Depth-Varying Aftershock Patterns for Major and Great (M W ≥ 7.0) Megathrust Earthquakes (2017) (0)
- Short Notes Strong Lg Attenuation in the Tibetan Plateau (2003) (0)
- Fast and slow intraplate ruptures during the 19 October 2020 magnitude 7.6 Shumagin earthquake (2023) (0)
- Earth motions & seismometry (2021) (0)
- Surface Topography Effects on Lg Wave Propagation in Heterogeneous Crustal Waveguides. (1997) (0)
- Detecting and Locating Aftershocks for the 2020 Mw 6.5 Stanley, Idaho, Earthquake Using Convolutional Neural Networks (2022) (0)
- Body-waves and ray theory – amplitudes (2021) (0)
- Imaging the rupture of the September 2009 M81 Samoan outer rise earthquake and a triggered aftershock on the plate interface (2010) (0)
- An overview of global seismology (2021) (0)
- Modeling and Interpretation of Localized P-wave and S-wave Reflectivity in D (2008) (0)
- Imaging the Wenchuan Earthquake and its aftershocks using back-projection of Teleseismic P-Waves and Point-Spread Function Deconvolution (2008) (0)
- Very Long-Period Seismic Signals and Collapse Events at the Kilauea Summit Crater in 2018 (2018) (0)
- Analysis of P and Pdiff Coda Arrivals for Water Reverberations to Evaluate Shallow Slip Extent in Large Megathrust Earthquakes (2017) (0)
- Variation in the D" Discontinuity West of Central America (2002) (0)
- Resolution and Trade-offs in Finite Fault Inversions for Large Earthquakes Using Teleseismic Signals (Invited) (2010) (0)
- Megathrust complexity and the up-dip extent of slip during the 2021 Chignik, Alaska Peninsula earthquake (2023) (0)
- Satellite Observations of New Volcanic Island in Tonga (2007) (0)
- Imaging seismic-sources (2021) (0)
- A Compound Faulting Model for the 1975 Kalapana, Hawaii, Earthquake, Landslide, and Tsunami (2021) (0)
- Free oscillations (2021) (0)
- Seismic uncertainties. (1994) (0)
- Toward Unified Correction of Regional Phases for Amplitude and Travel Time Effects of Heterogeneous Structure (2015) (0)
- Seismology - The Deep Roots Of Continents (1988) (0)
- Absence of P-wave Reflectivity Near the D" S-wave Velocity Discontinuity in the Lowermost Mantle beneath the Cocos Plate (2007) (0)
- Tsunami and tsunami warning (2021) (0)
- Seismological Evidence for General Anisotropy in the d" Layer Beneath the Caribbean (2004) (0)
- The base of the mantle beneath the Pacific: noLVZ, LVZ and ULVZ (2008) (0)
- Lithospheric Scale Deformation in Mega-thrust Subduction Zones (2008) (0)
- Validation of linearity for tsunami waves in joint inversion of kinematic rupture models: Application to the 2010 Mentawai Mw 7.8 tsunami earthquake (2015) (0)
- Mapping The Ruptures of the Great Sumatra-Andaman Earthquakes (2005) (0)
- Seismic point-source radiation patterns (2021) (0)
- High-resolution investigation of lowermost mantle anisotropy beneath the Central Pacific (2004) (0)
- A Ghost Tsunami without warning (2020) (0)
- EFFECTS OF 3D SURFACE TOPOGRAPHY ON REGIONAL AND TELESEISMIC SIGNALS FROM UNDERGROUND EXPLOSIONS (2011) (0)
- SOURCE PARAMETERS OF' THE EARTHQUAKE, DETERMINED BY USING LONG-PERIOD SEISMIC WAVE@ (1989) (0)
- Numerical Simulations of Surface Topography Effects on Shallow Explosion Ground Motions with Applications to S-Wave Generation and North Korean Nuclear Tests (2014) (0)
- AGU organizes SEDI Committee (1988) (0)
- Variations Lithospheric Scale Strain Accumulation in Mega-thrust Subduction Zones: Implications for Earthquake rupture (2009) (0)
- Prepared by the Seismological Grand Challenges Writing Group (2008) (0)
- Waveguide Controls on Regional Waves (2000) (0)
- Responding to Media Inquiries about Earthquake Triggering Interactions (2021) (0)
- Analysis of amplitude and travel-time anomalies for short-period -waves from NTS (Nevada Test Site) explosions (1988) (0)
- The Prospect of using Three-Dimensional Earth Models To Improve Nuclear Explosion Monitoring and Ground Motion Hazard Assessment (2008) (0)
- Imaging Reflectors in the Deep Mantle; Post-Perovskite or Not? (2005) (0)
- Imaging Upper Mantle Discontinuities in the Tonga Wedge by 3D True-amplitude Kirchhoff Migration of pXP, sXP and sXSH Data (2006) (0)
- Coseismic Slip Model of the 19 September 2022 Mw 7.6 Michoacán, Mexico, Earthquake: A Quasi-Repeat of the 1973 Mw 7.6 Rupture (2023) (0)
- Regional Characteristics of Observable Foreshocks (2022) (0)
- Precursory remote triggering is absent near the epicenters of impending great 1 earthquakes 2 (2012) (0)
- Thorne Lay: RAS Gold Medallist 2021 (2021) (0)
- “The Earth's Mantle: Composition, Structure and Evolution” by Ian Jackson (1999) (0)
- Probing the Thermal State of Mars Using InSight Seismic Data (2015) (0)
- Source rupture process of the 5 September 2012 Costa Rica Mw=7.6 thrust event from joint inversion of high-rate GPS, strong motion, and teleseismic P wave data (2013) (0)
- Synthetic Seismograms in Heterogeneous Media and Study of Formation and Propagation of Regional Phases (1995) (0)
- Analysis of Upper and Lower Mantle Structure Using Shear Waves (1983) (0)
- The comprehensive Nuclear Test Ban Treaty and Seismological Research (1998) (0)
- Earthquake rupture and source time functions (2021) (0)
- Badro, Brodsky, and Pataki Receive 2008 James B. Macelwane Medals (2009) (0)
- Precursory remote triggering is absent before great earthquakes (2012) (0)
- Earthquakes and plate tectonics (2021) (0)
- High Resolution/High Fidelity Seismic Imaging and Parameter Estimation for Geological Structure and Material Characterization (2005) (0)
- Study of Surface Effects on LG Wave Propagation in Heterogeneous Crusts by a GS-BE Hybrid Method (1998) (0)
- Elasticity and seismic waves (2021) (0)
- Seismic point-source models (2021) (0)
- Jiajun Zhang (1946–2006) (2006) (0)
- Measured energy in Japan quake - reply (2012) (0)
- F 49620-95-1-0028 SYNTHETIC SEISMOGRAMS IN HETEROGENEOUS ELASTIC WAVEGUIDES AND APPLICATIONS IN INVESTIGATING LG-WAVE PROPAGATION (0)
- Rapid source-mechanism analyis of the April 29, 1993 Cataract Creek Mw=5.3), northern Arizona earthquake: Bulletin - Seismological Society of America, 84 (2), 1994, pp 451–457 (1994) (0)
- The GSN and large earthquakes (2010) (0)
- Imaging Upper Mantle Discontinuities by 3D Kirchhoff Migration of pXP, sXP and sXSH Reflections with Seismic Illumination Compensation (2008) (0)
- Yield Estimation for the North Korean Nuclear Tests (2018) (0)
- Reappraisal of the 2010 Maule, 2014 Iquique, 2015 Illapel through Inversion of Geodetic Data and Tsunami Waveforms Using the Optimal Time Alignment (OTA) Method (2017) (0)
- Correction to: \Surges along the Honolulu coast from the 2011 Tohoku tsunami" (2013) (0)
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Other Resources About Thorne Lay
What Schools Are Affiliated With Thorne Lay?
Thorne Lay is affiliated with the following schools:
- University of Rochester
- Arizona State University
- University of California, Santa Cruz
- Harvard University
- University of Oslo
- University of California, Berkeley
- University of Science and Technology of China
- University of California, Santa Barbara
- California Institute of Technology
- University of Minnesota
- Stanford University
- Pennsylvania State University