Area of research
Geophysics · Aerospace Engineering
Research interest
Research interests include earthquake and tectonic studies, GNSS positioning and interference, Geophysics and Gravity Measurements, and Seismology and Earthquake Studies.
Real-Time Flash-Flood Prediction Using GNSS Water Vapor Observations and Deep Learning
Recent Advances in Rapid Earthquake Magnitude Estimation for Early Warning Systems using Seismogeodesy
Rapid Earthquake Magnitude Estimation for Local Early Warning Systems using Seismogeodesy
Sensitivity of GNSS to vertical land motion over Europe: effects of geophysical loadings and common-mode errors
Seismic Moment Accumulation Rate From Geodesy: Constraining Kostrov Thickness in Southern California
Real‐Time Seismogeodetic Earthquake Magnitude Estimates for Local Tsunami Warnings
Vertical Postseismic Deformation of the 2019 Ridgecrest Earthquake Sequence
Integrated Sentinel‐1 InSAR and GNSS Time‐Series Along the San Andreas Fault System
Coevolving early afterslip and aftershock signatures of a San Andreas fault rupture
Integrated Sentinel‐1 InSAR and GNSS Time‐Series Along the San Andreas Fault System
Defining the Coseismic Phase of the Crustal Deformation Cycle With Seismogeodesy
Coevolving early afterslip and aftershock signatures of a San Andreas fault rupture.
Integrated Sentinel-1 InSAR and GNSS time-series along the San Andreas fault system
Surface deformation associated with fractures near the 2019 Ridgecrest earthquake sequence
Dynamic Mapping of the Movement of Landfalling Atmospheric Rivers Over Southern California With GPS Data
Transient Deformation in California From Two Decades of GPS Displacements: Implications for a Three-Dimensional Kinematic Reference Frame.
Seismogeodetic P-wave Amplitude: No Evidence for Strong Determinism.
A Global Database of Strong‐Motion Displacement GNSS Recordings and an Example Application to PGD Scaling
Local tsunami warnings: Perspectives from recent large events
Seismogeodesy Using GPS and Low‐Cost MEMS Accelerometers: Perspectives for Earthquake Early Warning and Rapid Response
Earthquake magnitude calculation without saturation from the scaling of peak ground displacement
Kinematic earthquake source inversion and tsunami runup prediction with regional geophysical data
Seismogeodesy of the 2014<i>M<sub>w</sub></i>6.1 Napa earthquake, California: Rapid response and modeling of fast rupture on a dipping strike‐slip fault
Localized and distributed creep along the southern San Andreas Fault
Triple-frequency GPS precise point positioning with rapid ambiguity resolution
A new seismogeodetic approach applied to GPS and accelerometer observations of the 2012 Brawley seismic swarm: Implications for earthquake early warning
On robust and reliable automated baseline corrections for strong motion seismology
Interseismic Strain Localization in the San Jacinto Fault Zone
Rapid modeling of the 2011 Mw 9.0 Tohoku‐oki earthquake with seismogeodesy
Real‐time inversion of GPS data for finite fault modeling and rapid hazard assessment
Facilities Support: SOPAC GNSS Infrastructure and Real-time Operations
EAR/IF: Prototype Investigations into Integrated GPS/Seismic Networks for Improved Finite Fault Slip Modeling and Earthquake Characterization
Prototype Investigations into Integrated GPS/Seismic Networks for Improved Finite Fault Slip Modeling and Earthquake Characterization
RAPID: Low-Cost, Strong-Motion Sensor Packages to Obtain Full Spectrum Waveforms for Earthquake Early Warning and Structural Monitoring Applications
SGER: Coseismic/Postseismic GPS Field Surveys in Response to the 26 December 2004 Mw 9.0 Sumatra Earthquake
Investigations of Spatial and Temporal Variations in Strain Accumulation at the Sumatra Subduction Zone from Continuous GPS Measurements
Collaborative Research: GPS Crustal Deformation Monitoring in China
Collaborative Research: Fundamental Support for GPS Research - UNAVCO Facilities
Collaborative Research: GPS Crustal Deformation Monitoring in China
Collaborative Research: Integration of Synthetic Aperture Radar Interferometry, Continuous GPS and GPS Meteorology for Crustal Deformation and Earthquake Monitoring
Collaborative Research: Fundamental Support for GPS Research - UNAVCO Facilities
COLLABORATIVE RESEARCH: On the Sumatran Subduction Zone
Facility for Supporting the Analysis and Integration of Regional and Global GPS Networks for Crustal Deformation
Space Geodetic Investigation of the Northridge Earthquake
Analysis and Selective Resurvey of the Sumatra GPS Network
UNAVCO Workshop on Continuous GPS Networks and Seismic Networks
Precise GPS Ephemerides for Crustal Deformation Surveys
Collaborative Research: Establishment of a Geodetic Crustal Dynamics Network in Eastern Indonesia Using the Global Positioning System
Comparison of GPS and Historical Triangulation Data for Mapping Crustal Strain Across the Great Sumatran Fault System
U.S.-Indonesia Cooperative Research: Geodetic investigation of oblique plate convergence in Sumatra
GPS Instruments for Crustal Deformation Monitoring in California
Preseismic and Postseismic Analysis of GPS and TrilaterationData at Loma Prieta
Collaborative Research: Geodetic Investigations of Oblique Plate Convergence in Sumatra
U.S.-Indonesia Cooperative Research: Geodetic Investigation of Oblique Plate Convergence in Sumatra