Laboratory Earthquakes: The Sub-Rayleigh-to-Supershear Rupture Transition

We report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh-to-supershear rupture transitions in frictionally held interfaces. The laboratory experiments mimic natural earthquakes. The results suggest that under certain conditions...

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Published inScience (American Association for the Advancement of Science) Vol. 303; no. 5665; pp. 1859 - 1861
Main Authors Xia, Kaiwen, Rosakis, Ares J., Kanamori, Hiroo
Format Journal Article
LanguageEnglish
Published Washington, DC American Association for the Advancement of Science 19.03.2004
The American Association for the Advancement of Science
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Abstract We report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh-to-supershear rupture transitions in frictionally held interfaces. The laboratory experiments mimic natural earthquakes. The results suggest that under certain conditions supershear rupture propagation can be facilitated during large earthquake events.
AbstractList We report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh-to-supershear rupture transitions in frictionally held interfaces. The laboratory experiments mimic natural earthquakes. The results suggest that under certain conditions supershear rupture propagation can be facilitated during large earthquake events. [PUBLICATION ABSTRACT]
We report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh-to-supershear rupture transitions in frictionally held interfaces. The laboratory experiments mimic natural earthquakes. The results suggest that under certain conditions supershear rupture propagation can be facilitated during large earthquake events.
The authors report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh-to-supershear rupture transitions in frictionally held interfaces. The laboratory experiments mimic natural earthquakes. The results suggest that under certain conditions supershear rupture propagation can be facilitated during large earthquake events.
Audience Academic
Author Xia, Kaiwen
Kanamori, Hiroo
Rosakis, Ares J.
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  surname: Xia
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  givenname: Ares J.
  surname: Rosakis
  fullname: Rosakis, Ares J.
– sequence: 3
  givenname: Hiroo
  surname: Kanamori
  fullname: Kanamori, Hiroo
BackLink http://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=15685032$$DView record in Pascal Francis
https://www.ncbi.nlm.nih.gov/pubmed/15031503$$D View this record in MEDLINE/PubMed
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Issue 5665
Keywords nucleation
interfaces
instruments
propagation
shear
earthquakes
friction
laboratory studies
seismic waves
rupture
Language English
License CC BY 4.0
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References 15031488 - Science. 2004 Mar 19;303(5665):1788-9
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Snippet We report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh-to-supershear rupture...
We report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh–to–supershear rupture...
The authors report on the experimental observation of spontaneously nucleated supershear rupture and on the visualization of sub-Rayleigh-to-supershear rupture...
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SubjectTerms Coefficient of friction
Earth sciences
Earth, ocean, space
Earthquakes
Earthquakes, seismology
Exact sciences and technology
Experiments
Fracture mechanics
Internal geophysics
Laboratory Experiments
Observations
Pressure pulses
Seismology
Shear (Mechanics)
Shear stress
Statics
Traumatic ruptures
Title Laboratory Earthquakes: The Sub-Rayleigh-to-Supershear Rupture Transition
URI https://www.jstor.org/stable/3836516
https://www.ncbi.nlm.nih.gov/pubmed/15031503
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Volume 303
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