Complex nonvolcanic tremor near Parkfield, California, triggered by the great 2004 Sumatra earthquake

In several instances, the passing surface waves from large earthquakes have ignited nonvolcanic tremor (NVT) on major faults. Still, the mechanism of tremor and its reaction to the dynamic stressing from various body and surface waves is poorly understood. We examine tremor near Parkfield, Californi...

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Bibliographic Details
Published inJournal of Geophysical Research. B. Solid Earth Vol. 114; no. B12
Main Authors Ghosh, Abhijit, Vidale, John E., Peng, Zhigang, Creager, Kenneth C., Houston, Heidi
Format Journal Article
LanguageEnglish
Published Washington Blackwell Publishing Ltd 01.12.2009
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Summary:In several instances, the passing surface waves from large earthquakes have ignited nonvolcanic tremor (NVT) on major faults. Still, the mechanism of tremor and its reaction to the dynamic stressing from various body and surface waves is poorly understood. We examine tremor near Parkfield, California, beneath the San Andreas fault triggered by the Mw 9.2, 2004 Sumatra earthquake. The prolonged shaking produces the richest and the most varied observations of dynamically triggered tremor to date. The tremor appears in at least three distinct locations and shows activity pulsing with encouraging stress, as has been observed in other cases. The greatest amount of triggering and tremor modulation accompanies the long‐period Love waves. Rayleigh waves, on the other hand, appear to be less effective in exciting tremor sources. Also, at times, the tremor stops before the surface waves are complete, at other times it continues quivering after the waves have passed. While tremor is found to be sensitive to small stress changes, there are times when stresses of comparable magnitudes do not trigger noticeable tremor. Some tremors in this NVT sequence appear to be associated with the passage of P waves, which is unusual and surprising given the small stresses they impart.
Bibliography:istex:7F62E5C87434FF4AF5766FD76E19A1E58CF144B6
ArticleID:2008JB006062
ark:/67375/WNG-FJGN70CD-T
ObjectType-Article-2
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content type line 23
ISSN:0148-0227
2169-9313
2156-2202
2169-9356
DOI:10.1029/2008JB006062