Nowcasting Earthquakes: Imaging the Earthquake Cycle in California With Machine Learning
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James P. Crutchfield | Geoffrey Fox | Andrea Donnellan | Robert Granat | John B Rundle | J. Crutchfield | A. Donnellan | Geoffrey Fox | R. Granat | J. Rundle
[1] D. M. Green,et al. Signal detection theory and psychophysics , 1966 .
[2] Panayiotis A. Varotsos,et al. Self-organized criticality and earthquake predictability: A long-standing question in the light of natural time analysis , 2020, EPL (Europhysics Letters).
[3] P. Varotsos,et al. Long-range correlations in the electric signals that precede rupture. , 2002, Physical review. E, Statistical, nonlinear, and soft matter physics.
[4] Filippos Vallianatos,et al. Non-extensivity and long-range correlations in the earthquake activity at the West Corinth rift (Greece) , 2013 .
[5] P. Varotsos,et al. Similarity of fluctuations in correlated systems: the case of seismicity. , 2005, Physical review. E, Statistical, nonlinear, and soft matter physics.
[6] D. Turcotte,et al. Natural time and nowcasting induced seismicity at the Groningen gas field in the Netherlands , 2018, Geophysical Journal International.
[7] Christensen,et al. Self-organized criticality in a continuous, nonconservative cellular automaton modeling earthquakes. , 1992, Physical review letters.
[8] P. Revathi,et al. Earthquake correlations and networks: a comparative study. , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[9] W. Klein,et al. Pattern Dynamics and Forecast Methods in Seismically Active Regions , 2002 .
[10] J. Crutchfield,et al. Global Seismic Nowcasting With Shannon Information Entropy , 2019, Earth and space science.
[11] S. Pasari,et al. Contemporary Earthquake Hazards in the West-Northwest Himalaya: A Statistical Perspective through Natural Times , 2020 .
[12] S. Pasari. Stochastic Modeling of Earthquake Interevent Counts (Natural Times) in Northwest Himalaya and Adjoining Regions , 2018 .
[13] D. Turcotte,et al. Natural Time and Nowcasting Earthquakes: Are Large Global Earthquakes Temporally Clustered? , 2018, Pure and Applied Geophysics.
[14] P. Varotsos,et al. Study of the temporal correlations in the magnitude time series before major earthquakes in Japan , 2014 .
[15] T. Wilson,et al. Space-Time Correlations of Seismotectonic Parameters: Examples from Japan and from Turkey Preceding the İzmit Earthquake , 2002 .
[16] D. Turcotte,et al. The complex dynamics of earthquake fault systems: new approaches to forecasting and nowcasting of earthquakes , 2021, Reports on progress in physics. Physical Society.
[17] A. Donnellan,et al. Nowcasting Earthquakes in Southern California With Machine Learning: Bursts, Swarms, and Aftershocks May Be Related to Levels of Regional Tectonic Stress , 2020, Earth and Space Science.
[18] S. Pasari,et al. NOWCASTING EARTHQUAKES IN THE NORTHWEST HIMALAYA AND SURROUNDING REGIONS , 2018, The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences.
[19] Paul A. Johnson,et al. Continuous chatter of the Cascadia subduction zone revealed by machine learning , 2018, Nature Geoscience.
[20] K. Tiampo,et al. Eigenpatterns in southern California seismicity , 2002 .
[21] Louise H. Kellogg,et al. Generic Earthquake Simulator , 2012 .
[22] John B. Rundle,et al. Nowcasting Earthquakes: A Comparison of Induced Earthquakes in Oklahoma and at the Geysers, California , 2017, Pure and Applied Geophysics.
[23] C. E. SHANNON,et al. A mathematical theory of communication , 1948, MOCO.
[24] P. Varotsos,et al. Remarkable changes in the distribution of the order parameter of seismicity before mainshocks , 2012 .