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      Slip acceleration generates seismic tremor like signals in friction experiments : SLIP ACCELERATION AND TREMORS

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          Most cited references29

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          Mechanism of deep low frequency earthquakes: Further evidence that deep non-volcanic tremor is generated by shear slip on the plate interface

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            Tidal modulation of nonvolcanic tremor.

            Episodes of nonvolcanic tremor and accompanying slow slip recently have been observed in the subduction zones of Japan and Cascadia. In Cascadia, such episodes typically last a few weeks and differ from "normal" earthquakes in their source location and moment-duration scaling. The three most recent episodes in the Puget Sound/southern Vancouver Island portion of the Cascadia subduction zone were exceptionally well recorded. In each episode, we saw clear pulsing of tremor activity with periods of 12.4 and 24 to 25 hours, the same as the principal lunar and lunisolar tides. This indicates that the small stresses associated with the solid-earth and ocean tides influence the genesis of tremor much more effectively than they do the genesis of normal earthquakes. Because the lithostatic stresses are 10(5) times larger than those associated with the tides, we argue that tremor occurs on very weak faults.
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              Striations, duration, migration and tidal response in deep tremor

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                Author and article information

                Journal
                Geophysical Research Letters
                Geophys. Res. Lett.
                American Geophysical Union (AGU)
                00948276
                January 16 2011
                January 16 2011
                January 15 2011
                : 38
                : 1
                : n/a
                Affiliations
                [1 ]Laboratoire de Géophysique Interne et Tectonophysique, CNRS; Université Joseph Fourier; Grenoble France
                [2 ]Laboratoire de Géophysique Interne et Tectonophysique, IRD, CNRS; Université Joseph Fourier; Grenoble France
                [3 ]Centre de Recherches Géophysiques, CNRSL; Bhannès Liban
                [4 ]Laboratoire de Géodynamique des Chaînes Alpines, CNRS; Université Joseph Fourier; Grenoble France
                [5 ]Physics of Geological Processes; University of Oslo; Oslo Norway
                Article
                10.1029/2010GL045603
                b5632430-3939-4cc9-acad-acc710b5c711
                © 2011

                http://doi.wiley.com/10.1002/tdm_license_1.1

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