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High-resolution seismic constraints on flow dynamics in the oceanic asthenosphere
Lin, P.-Y.P.; Gaherty, J.B.; Jin, G.; Collins, J.A.; Lizarralde, D.; Evans, R.E.; Hirth, G. (2016). High-resolution seismic constraints on flow dynamics in the oceanic asthenosphere. Nature (Lond.) 535(7613): 538-541. http://dx.doi.org/10.1038/nature18012
In: Nature: International Weekly Journal of Science. Nature Publishing Group: London. ISSN 0028-0836; e-ISSN 1476-4687, meer
Peer reviewed article  

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Auteurs  Top 
  • Lin, P.-Y.P.
  • Gaherty, J.B.
  • Jin, G.
  • Collins, J.A.
  • Lizarralde, D.
  • Evans, R.E.
  • Hirth, G.

Abstract
    Rayleigh waves recorded with an ocean-bottom seismograph array in the central Pacific Ocean constrain the seismic anisotropy within the oceanic lithosphere–asthenosphere system: seafloor-spreading-induced lithospheric fabric generates the strongest anisotropy, while density- and/or pressure-driven flow produces a secondary peak in anisotropy at the base of the asthenosphere.

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