HR: 1340h
AN: T13B-1333 [Abstracts]
TI: B-type olivine fabrics developed during progressive retrogression above subducting slab in the mantle wedge
AU: * Tasaka, M
EM: Tasaka@eps.s.u-tokyo.ac.jp
AF: Department of Earth and Planetary Science, University of Tokyo, 7-3-1 Hongo, Bunkyou-ku,
Tokyo, 113-003, Japan
AU: Toriumi, M
EM: Tori@k.u-tokyo.ac.jp
AF: Department of Complexity Science and Engineering, 5-1-5 kashiwanoha, Kashiwa, 277-
8561, Japan
AU: Michibayashi, K
EM: sekmich@ipc.shizuoka.ac.jp
AF: Institute of Geosciences, Shizuoka Univ., Ohya 836, Suruga-ku, Shizuoka, 4228529, Japan
AB:
B-type olivine fabrics occur pervasively within highly depleted dunites in a small Imono peridotite body located in
the subduction-type Sanbagawa metamorphic belt in the southwest Japan arc, with various microstructures from
relatively coarse granular texture to fine-grained intensely sheared texture. The Mg/(Mg + Fe) atomic ratios (Fo
number) of olivine within these dunites are constantly around 0.9 and Cr/(Cr + Al) atomic ratios (Cr number) of
chromian spinels are constantly around 0.9. It suggesting that they could have evolved through high depleted
magma. This provides strong thermal constraints on the formation of the highly depleted dunites that require hot,
hydrous shallow mantle (>1250C at <30km depth) in the mantle wedge. Before these peridotites were finally
entrained by the Sanbagawa metamorphic belt during progressive retrogression, they could flow downward along
the subducting slab up to 2.8 GPa (>80km) at temperatures of 750-800C. Therefore, B-type olivine fabrics
should be developed during downward flow along the subducting slab, possibly in relation with dehydration from
the slab. Such occurrences provide a new insight of mantle flow in the fore-arc mantle wedge, where hydrated
asthenospheric mantle flow is subsequently altered by retrogressive deformation before/during exhumation with
metamorphosed slab materials. The small magnitude of S-wave splitting can be explained by the seismic
properties of the B-type peridotites for an approximately 10-km thick anisotropic layer subparallel to the
subducting slab, indicating that the B-type layer could be one of the dominant sources of seismic anisotropy in
the fore-arc region.
DE: 8031 Rheology: crust and lithosphere (8159)
DE: 8033 Rheology: mantle (8162)
DE: 8159 Rheology: crust and lithosphere (8031)
DE: 8162 Rheology: mantle (8033)
DE: 8163 Rheology and friction of fault zones (8034)
SC: Tectonophysics [T]
MN: 2007 Fall Meeting