Search Results - "Lindsey, Eric O."
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Line-of-sight displacement from ALOS-2 interferometry: Mw 7.8 Gorkha Earthquake and Mw 7.3 aftershock
Published in Geophysical research letters (28-08-2015)“…Interferometric synthetic aperture radar (InSAR) is a key tool for the analysis of displacement and stress changes caused by large crustal earthquakes,…”
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2
Slip rate deficit and earthquake potential on shallow megathrusts
Published in Nature geoscience (01-05-2021)“…Most destructive tsunamis are caused by seismic slip on the shallow part of offshore megathrusts. The likelihood of this behaviour is partly determined by the…”
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3
Long-lived shallow slow-slip events on the Sunda megathrust
Published in Nature geoscience (01-05-2021)“…During most of the time between large earthquakes at tectonic plate boundaries, surface displacement time series are generally observed to be linear. This…”
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4
Localized and distributed creep along the southern San Andreas Fault
Published in Journal of geophysical research. Solid earth (01-10-2014)“…We investigate the spatial pattern of surface creep and off‐fault deformation along the southern segment of the San Andreas Fault using a combination of…”
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5
Piecemeal Rupture of the Mentawai Patch, Sumatra: The 2008 Mw 7.2 North Pagai Earthquake Sequence
Published in Journal of geophysical research. Solid earth (01-11-2017)“…The 25 February 2008 Mw 7.2 North Pagai earthquake partially ruptured the middle section of the Mentawai patch of the Sunda megathrust, offshore Sumatra. The…”
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6
Can the Updip Limit of Frictional Locking on Megathrusts Be Detected Geodetically? Quantifying the Effect of Stress Shadows on Near‐Trench Coupling
Published in Geophysical research letters (28-05-2018)“…The updip limit of the seismogenic zone of megathrusts is poorly understood. The relative absence of observed microseismicity in such regions, together with…”
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7
‘Double Puzzle’ at the Shumagin seismic gap, Alaska Peninsula: intraslab strike-slip faulting loaded by lateral variations in megathrust fault friction
Published in Geophysical journal international (01-03-2024)“…SUMMARY Along the Aleutian megathrust, the Shumagin seismic gap (162° W–158.5° W) had not hosted a large megathrust earthquake during the observational period…”
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8
Active Convergence of the India‐Burma‐Sunda Plates Revealed by a New Continuous GPS Network
Published in Journal of geophysical research. Solid earth (01-03-2019)“…The Rakhine (Arakan)‐Bangladesh megathrust, along which the Indian and Burma plates collide, is assumed by some to be inactive/aseismic due to the lack of…”
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9
GNSS characterization of hydrological loading in South and Southeast Asia
Published in Geophysical journal international (01-03-2021)“…SUMMARY The elastic response of the lithosphere to surface mass redistributions produces geodetically measurable deformation of the Earth. This deformation is…”
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10
Surface Creep Rate of the Southern San Andreas Fault Modulated by Stress Perturbations From Nearby Large Events
Published in Geophysical research letters (16-10-2018)“…A major challenge for understanding the physics of shallow fault creep has been to observe and model the long‐term effect of stress changes on creep rate. Here…”
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11
Line‐of‐sight displacement from ALOS‐2 interferometry: M w 7.8 Gorkha Earthquake and M w 7.3 aftershock
Published in Geophysical research letters (28-08-2015)“…Abstract Interferometric synthetic aperture radar (InSAR) is a key tool for the analysis of displacement and stress changes caused by large crustal…”
Get full text
Journal Article -
12
Subduction initiation and the rise of the Shillong Plateau
Published in Earth and planetary science letters (01-08-2020)“…Discrepancies between geodetically and geologically estimated thrust fault slip rates are generally viewed as a methodological problem. Even when slip rate is…”
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13
Active subduction and strain partitioning in western Myanmar revealed by a dense survey GNSS network
Published in Earth and planetary science letters (15-11-2023)“…The active tectonics of the Myanmar (formerly Burma) microplate in central Myanmar are caused by the oblique collision between the Sunda and Eurasia plates to…”
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14
The 2015 M w 6.0 Mt. Kinabalu earthquake: an infrequent fault rupture within the Crocker fault system of East Malaysia
Published in Geoscience letters (09-03-2017)Get full text
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15
Line-of-sight displacement from ALOS-2 interferometry: M sub(w) 7.8 Gorkha Earthquake and M sub(w) 7.3 aftershock
Published in Geophysical research letters (01-08-2015)“…Interferometric synthetic aperture radar (InSAR) is a key tool for the analysis of displacement and stress changes caused by large crustal earthquakes,…”
Get full text
Journal Article -
16
The January 11, 2018, M w 6.0 Bago‐Yoma, Myanmar Earthquake: A Shallow Thrust Event Within the Deforming Bago‐Yoma Range
Published in Journal of geophysical research. Solid earth (01-07-2021)“…Abstract On January 11, 2018 (18:26 UTC), a M w 6.0 earthquake occurred approximately 30 km west of the Sagaing Fault in the Bago‐Yoma Range (BYR). Using a…”
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17
Piecemeal Rupture of the Mentawai Patch, Sumatra: The 2008 M w 7.2 North Pagai Earthquake Sequence
Published in Journal of geophysical research. Solid earth (01-11-2017)“…Abstract The 25 February 2008 M w 7.2 North Pagai earthquake partially ruptured the middle section of the Mentawai patch of the Sunda megathrust, offshore…”
Get full text
Journal Article -
18
The 2015 Mw 6.0 Mt. Kinabalu earthquake: an infrequent fault rupture within the Crocker fault system of East Malaysia
Published in Geoscience letters (09-03-2017)“…The M w 6.0 Mt. Kinabalu earthquake of 2015 was a complete (and deadly) surprise, because it occurred well away from the nearest plate boundary in a region of…”
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Journal Article -
19
The 2015 M ^sub w^ 6.0 Mt. Kinabalu earthquake: an infrequent fault rupture within the Crocker fault system of East Malaysia
Published in Geoscience letters (01-03-2017)“…The M w 6.0 Mt. Kinabalu earthquake of 2015 was a complete (and deadly) surprise, because it occurred well away from the nearest plate boundary in a region of…”
Get full text
Journal Article